protein_name stringlengths 4 4 | structure_title stringlengths 3 322 | main_text stringlengths 0 302k |
|---|---|---|
3NMU | Crystal Structure of substrate-bound halfmer box C/D RNP | Structural basis for substrate placement by an archaeal box C/D
ribonucleoprotein particle
Song Xue1,*, Ruiying Wang2, Fangping Yang2, Rebecca M. Terns3, Michael P. Terns3,
Xinxin Zhang4, E. Stuart Maxwell4, and Hong Li1,2
1Institute of Molecular Biophysics, Florida State University, Tallahassee, FL 32306, USA
2Departm... |
3NMV | Crystal structure of pyrabactin-bound abscisic acid receptor PYL2 mutant A93F in complex with type 2C protein phosphatase ABI2 | Identification and Mechanism of ABA Receptor Antagonism
Karsten Melcher1,§,*, Yong Xu1,*, Ley-Moy Ng1,2,*, X. Edward Zhou1,*, Fen-Fen Soon1,2,*,
Viswanathan Chinnusamy3,4, Kelly M. Suino-Powell1, Amanda Kovach1, Fook S. Tham3,
Sean R. Cutler4, Jun Li1,2, Eu-Leong Yong2, Jian-Kang Zhu4,5, and H. Eric Xu1,§
1Laboratory... |
3NMW | Crystal structure of armadillo repeats domain of APC | Structure of the APC/Asef complex
372
npg
Cell Research | Vol 22 No 2 | February 2012
ORIGINAL ARTICLE
Structural basis for the recognition of Asef by
adenomatous polyposis coli
Zhenyi Zhang
1, 2, *, Leyi Chen
1, 2, *, Lei Gao
1, 2, *, Kui Lin
1, 2, *, Liang Zhu
1, 2, 4, Yang Lu
1, Xiaoshan Shi
1, 3, Yuan Gao
1, 2, ... |
3NMX | Crystal structure of APC complexed with Asef | Structure of the APC/Asef complex
372
npg
Cell Research | Vol 22 No 2 | February 2012
ORIGINAL ARTICLE
Structural basis for the recognition of Asef by
adenomatous polyposis coli
Zhenyi Zhang
1, 2, *, Leyi Chen
1, 2, *, Lei Gao
1, 2, *, Kui Lin
1, 2, *, Liang Zhu
1, 2, 4, Yang Lu
1, Xiaoshan Shi
1, 3, Yuan Gao
1, 2, ... |
3NMZ | Crystal structure of APC complexed with Asef | Structure of the APC/Asef complex
372
npg
Cell Research | Vol 22 No 2 | February 2012
ORIGINAL ARTICLE
Structural basis for the recognition of Asef by
adenomatous polyposis coli
Zhenyi Zhang
1, 2, *, Leyi Chen
1, 2, *, Lei Gao
1, 2, *, Kui Lin
1, 2, *, Liang Zhu
1, 2, 4, Yang Lu
1, Xiaoshan Shi
1, 3, Yuan Gao
1, 2, ... |
3NNA | Crystal Structure of CUGBP1 RRM1/2-RNA Complex | Structural Insights into RNA Recognition by the Alternate-
splicing Regulator CUG Binding Protein 1
Marianna Teplova, Jikui Song, Hai Yan Gaw, Alexei Teplov, and Dinshaw J. Patel
Structural Biology Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA
Abstract
CUG binding protein 1 (CUGBP1) regulates... |
3NNC | Crystal Structure of CUGBP1 RRM1/2-RNA Complex | Structural Insights into RNA Recognition by the Alternate-
splicing Regulator CUG Binding Protein 1
Marianna Teplova, Jikui Song, Hai Yan Gaw, Alexei Teplov, and Dinshaw J. Patel
Structural Biology Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA
Abstract
CUG binding protein 1 (CUGBP1) regulates... |
3NNF | Halogenase domain from CurA module with Fe, chloride, and alpha-ketoglutarate | Conformational switch triggered by α-ketoglutarate
in a halogenase of curacin A biosynthesis
Dheeraj Kharea, Bo Wangb, Liangcai Gua,c,2, Jamie Razeluna, David H. Shermana,b,c,d, William H. Gerwicke,
Kristina Håkanssonb, and Janet L. Smitha,f,1
aLife Sciences Institute and Departments of bChemistry, cMedicinal Chemistry... |
3NNH | Crystal Structure of the CUGBP1 RRM1 with GUUGUUUUGUUU RNA | Structural Insights into RNA Recognition by the Alternate-
splicing Regulator CUG Binding Protein 1
Marianna Teplova, Jikui Song, Hai Yan Gaw, Alexei Teplov, and Dinshaw J. Patel
Structural Biology Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA
Abstract
CUG binding protein 1 (CUGBP1) regulates... |
3NNJ | Halogenase domain from CurA module (apo Hal) | Conformational switch triggered by α-ketoglutarate
in a halogenase of curacin A biosynthesis
Dheeraj Kharea, Bo Wangb, Liangcai Gua,c,2, Jamie Razeluna, David H. Shermana,b,c,d, William H. Gerwicke,
Kristina Håkanssonb, and Janet L. Smitha,f,1
aLife Sciences Institute and Departments of bChemistry, cMedicinal Chemistry... |
3NNK | Biochemical and Structural Characterization of a Ureidoglycine Aminotransferase in the Klebsiella pneumoniae Uric Acid Catabolic Pathway | Biochemical and Structural Characterization of a Ureidoglycine
Aminotransferase in the Klebsiella pneumoniae Uric Acid
Catabolic Pathway†
Jarrod B. French and Steven E. Ealick*
Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York,
14853-1301
Abstract
Many plants, fungi, and bacteria catabo... |
3NNL | Halogenase domain from CurA module (crystal form III) | Conformational switch triggered by α-ketoglutarate
in a halogenase of curacin A biosynthesis
Dheeraj Kharea, Bo Wangb, Liangcai Gua,c,2, Jamie Razeluna, David H. Shermana,b,c,d, William H. Gerwicke,
Kristina Håkanssonb, and Janet L. Smitha,f,1
aLife Sciences Institute and Departments of bChemistry, cMedicinal Chemistry... |
3NNM | Halogenase domain from CurA module (crystal form IV) | Conformational switch triggered by α-ketoglutarate
in a halogenase of curacin A biosynthesis
Dheeraj Kharea, Bo Wangb, Liangcai Gua,c,2, Jamie Razeluna, David H. Shermana,b,c,d, William H. Gerwicke,
Kristina Håkanssonb, and Janet L. Smitha,f,1
aLife Sciences Institute and Departments of bChemistry, cMedicinal Chemistry... |
3NNN | BeF3 Activated DrrD Receiver Domain | Regulation of Response Regulator Autophosphorylation
through Interdomain Contacts*□
S
Received for publication,June 25, 2010, and in revised form, July 29, 2010 Published, JBC Papers in Press,August 11, 2010, DOI 10.1074/jbc.M110.157164
Christopher M. Barbieri‡§¶, Timothy R. Mack‡§1, Victoria L. Robinson‡§¶2, Matthe... |
3NNQ | Crystal Structure of the N-terminal domain of Moloney murine leukemia virus integrase, Northeast Structural Genomics Consortium Target OR3 | X-ray Crystal Structure of the N-Terminal Region of Moloney
Murine Leukemia Virus Integrase and its Implications for Viral
DNA Recognition
Rongjin Guan1,2,3, Sriram Aiyer4, Marie L. Cote5, Rong Xiao1,2,3, Mei Jiang1,2,3, Thomas B.
Acton1,2,3, Monica J. Roth4,*, and Gaetano T. Montelione1,2,3,*
1Center for Advanced B... |
3NNS | BeF3 Activated DrrB Receiver Domain | Regulation of Response Regulator Autophosphorylation
through Interdomain Contacts*□
S
Received for publication,June 25, 2010, and in revised form, July 29, 2010 Published, JBC Papers in Press,August 11, 2010, DOI 10.1074/jbc.M110.157164
Christopher M. Barbieri‡§¶, Timothy R. Mack‡§1, Victoria L. Robinson‡§¶2, Matthe... |
3NNT | Crystal Structure of K170M Mutant of Type I 3-Dehydroquinate Dehydratase (aroD) from Salmonella typhimurium LT2 in Non-Covalent Complex with Dehydroquinate. | Insights into the Mechanism of Type I Dehydroquinate
Dehydratases from Structures of Reaction Intermediates*
Received for publication,October 8, 2010, and in revised form, October 28, 2010 Published, JBC Papers in Press,November 18, 2010, DOI 10.1074/jbc.M110.192831
Samuel H. Light‡§, George Minasov‡§, Ludmilla Shuvalo... |
3NNY | Structure of rat neuronal nitric oxide synthase heme domain complexed with 6-(((3R,4R)-4-(2-(3-Fluorophenethylamino)ethoxy)pyrrolidin-3-yl)methyl)pyridin-2-amine | Peripheral but crucial: a hydrophobic pocket (Tyr706, Leu337, and
Met336) for potent and selective inhibition of neuronal nitric oxide
synthase
Fengtian Xuea,†, Huiying Lib, Jianguo Fanga, Linda J. Romanc, Pavel Martásekc,§, Thomas
L. Poulosb, and Richard B. Silvermana
aDepartment of Chemistry, Department of Biochemist... |
3NNZ | Structure of rat neuronal nitric oxide synthase heme domain complexed with 6-(((3S,4S)-4-(2-(3-Fluorophenethylamino)ethoxy)pyrrolidin-3-yl)methyl)pyridin-2-amine | Peripheral but crucial: a hydrophobic pocket (Tyr706, Leu337, and
Met336) for potent and selective inhibition of neuronal nitric oxide
synthase
Fengtian Xuea,†, Huiying Lib, Jianguo Fanga, Linda J. Romanc, Pavel Martásekc,§, Thomas
L. Poulosb, and Richard B. Silvermana
aDepartment of Chemistry, Department of Biochemist... |
3NO0 | Aquifex aeolicus type IIA topoisomerase C-terminal domain | A naturally chimeric type IIA topoisomerase in
Aquifex aeolicus highlights an evolutionary
path for the emergence of functional paralogs
Elsa M. Trettera, Jeffrey C. Lermanb, and James M. Bergera,1
aDivision of Biochemistry and Molecular Biology, Department of Molecular and Cell Biology, University of California, Berke... |
3NO7 | Crystal structure of the centromere-binding protein ParB from plasmid pCXC100 | Crystal structure and centromere binding of the
plasmid segregation protein ParB from pCXC100
Lin Huang1,2, Ping Yin1, Xing Zhu2,3, Yi Zhang1 and Keqiong Ye2,*
1State Key Laboratory of Virology, College of Life Sciences, Wuhan University, Wuhan, Hubei 430072,
2National Institute of Biological Sciences, Beijing 102206 a... |
3NOF | Mycobacterium tuberculosis thioredoxin C C40S mutant | PROTEIN STRUCTURE REPORT
Structure of Mycobacterium tuberculosis
thioredoxin in complex with quinol inhibitor
PMX464
Gareth Hall, Tracey D. Bradshaw, Charles A. Laughton,
Malcolm F. Stevens, and Jonas Emsley*
Centre for Biomolecular Sciences, School of Pharmacy, University of Nottingham, Nottingham NG7 2RD,
United King... |
3NOJ | The structure of HMG/CHA aldolase from the protocatechuate degradation pathway of Pseudomonas putida | Structural and Kinetic Characterization of 4-Hydroxy-4-
methyl-2-oxoglutarate/4-Carboxy-4-hydroxy-2-oxoadipate
Aldolase, a Protocatechuate Degradation Enzyme
Evolutionarily Convergent with the HpaI and DmpG Pyruvate
Aldolases*□
S
Received for publication,June 29, 2010, and in revised form, September 3, 2010 Published, ... |
3NON | Crystal Structure of Isocyanide Hydratase from Pseudomonas fluorescens | Evolution of New Enzymatic Function by Structural
Modulation of Cysteine Reactivity in Pseudomonas
fluorescens Isocyanide Hydratase*□
S
Received for publication,May 24, 2010, and in revised form, July 7, 2010 Published, JBC Papers in Press,July 14, 2010, DOI 10.1074/jbc.M110.147934
Mahadevan Lakshminarasimhan1,2, Peter... |
3NOO | Crystal Structure of C101A Isocyanide Hydratase from Pseudomonas fluorescens | Evolution of New Enzymatic Function by Structural
Modulation of Cysteine Reactivity in Pseudomonas
fluorescens Isocyanide Hydratase*□
S
Received for publication,May 24, 2010, and in revised form, July 7, 2010 Published, JBC Papers in Press,July 14, 2010, DOI 10.1074/jbc.M110.147934
Mahadevan Lakshminarasimhan1,2, Peter... |
3NOP | Light-induced intermediate structure L1 of Pseudomonas aeruginosa bacteriophytochrome | Temperature-Scan Cryocrystallography Reveals Reaction
Intermediates in Bacteriophytochrome
Xiaojing Yang*,≠, Zhong Ren#, Jane Kuk*, and Keith Moffat*,#,≠
*Department of Biochemistry and Molecular Biology, The University of Chicago 929 East 57th
Street Chicago, IL 60637, U.S.A.
≠Institute for Biophysical Dynamics, The U... |
3NOQ | Crystal Structure of C101S Isocyanide Hydratase from Pseudomonas fluorescens | Evolution of New Enzymatic Function by Structural
Modulation of Cysteine Reactivity in Pseudomonas
fluorescens Isocyanide Hydratase*□
S
Received for publication,May 24, 2010, and in revised form, July 7, 2010 Published, JBC Papers in Press,July 14, 2010, DOI 10.1074/jbc.M110.147934
Mahadevan Lakshminarasimhan1,2, Peter... |
3NOR | Crystal Structure of T102S Isocyanide Hydratase from Pseudomonas fluorescens | Evolution of New Enzymatic Function by Structural
Modulation of Cysteine Reactivity in Pseudomonas
fluorescens Isocyanide Hydratase*□
S
Received for publication,May 24, 2010, and in revised form, July 7, 2010 Published, JBC Papers in Press,July 14, 2010, DOI 10.1074/jbc.M110.147934
Mahadevan Lakshminarasimhan1,2, Peter... |
3NOT | Light-induced intermediate structure L2 of P. aeruginosa bacteriophytochrome | Temperature-Scan Cryocrystallography Reveals Reaction
Intermediates in Bacteriophytochrome
Xiaojing Yang*,≠, Zhong Ren#, Jane Kuk*, and Keith Moffat*,#,≠
*Department of Biochemistry and Molecular Biology, The University of Chicago 929 East 57th
Street Chicago, IL 60637, U.S.A.
≠Institute for Biophysical Dynamics, The U... |
3NOU | Light-induced intermediate structure L3 of P. aeruginosa bacteriophytochrome | Temperature-Scan Cryocrystallography Reveals Reaction
Intermediates in Bacteriophytochrome
Xiaojing Yang*,≠, Zhong Ren#, Jane Kuk*, and Keith Moffat*,#,≠
*Department of Biochemistry and Molecular Biology, The University of Chicago 929 East 57th
Street Chicago, IL 60637, U.S.A.
≠Institute for Biophysical Dynamics, The U... |
3NOV | Crystal Structure of D17E Isocyanide Hydratase from Pseudomonas fluorescens | Evolution of New Enzymatic Function by Structural
Modulation of Cysteine Reactivity in Pseudomonas
fluorescens Isocyanide Hydratase*□
S
Received for publication,May 24, 2010, and in revised form, July 7, 2010 Published, JBC Papers in Press,July 14, 2010, DOI 10.1074/jbc.M110.147934
Mahadevan Lakshminarasimhan1,2, Peter... |
3NOW | UNC-45 from Drosophila melanogaster | X-ray crystal structure of the UCS domain-containing UNC-45
myosin chaperone from Drosophila melanogaster
Chi F. Lee1, Arthur V. Hauenstein2, Jonathan K. Fleming2, William C. Gasper1, Valerie
Engelke2, Banumathi Sankaran3, Sanford I. Bernstein1, and Tom Huxford2,*
1 Department of Biology, San Diego State University, 55... |
3NP3 | C112D/M121E Pseudomonas Aeruginosa Azurin | Outer-Sphere Effects on Reduction Potentials of Copper Sites in
Proteins: The Curious Case of High Potential Type 2 C112D/
M121E Pseudomonas aeruginosa Azurin
Kyle M. Lancaster1,*, Stephen Sproules2, Joshua H. Palmer1, John H. Richards1,*, and
Harry B. Gray1,*
1Beckman Institute, California Institute of Technology, Pas... |
3NP4 | C112D/M121E Pseudomonas aeruginosa Azurin | Outer-Sphere Effects on Reduction Potentials of Copper Sites in
Proteins: The Curious Case of High Potential Type 2 C112D/
M121E Pseudomonas aeruginosa Azurin
Kyle M. Lancaster1,*, Stephen Sproules2, Joshua H. Palmer1, John H. Richards1,*, and
Harry B. Gray1,*
1Beckman Institute, California Institute of Technology, Pas... |
3NP8 | Crystal structure of Staphylococcal nuclease variant Delta+PHS L36A at cryogenic temperature | Cavities determine the pressure unfolding of proteins
Julien Rochea,1, Jose A. Carob,1, Douglas R. Norbertoa,c, Philippe Barthea, Christian Roumestanda, Jamie L. Schlessmand,
Angel E. Garciae, Bertrand García-Moreno E.b, and Catherine A. Royera,2
aCentre de Biochimie Structurale, Institut National pour la Santé et la R... |
3NPD | Crystal structure of a putative secreted protein (PA3611) from PSEUDOMONAS AERUGINOSA at 1.60 A resolution | Crystal structure of a putative quorum sensing-regulated protein
(PA3611) from the Pseudomonas-specific DUF4146 family
Debanu Das1,2, Hsiu-Ju Chiu1,2, Carol L. Farr1,3, Joanna C. Grant1,4, Lukasz
Jaroszewski1,5,6, Mark W. Knuth1,4, Mitchell D. Miller1,2, Henry J. Tien1,3, Marc-André
Elsliger1,3, Ashley M. Deacon1,2, Ad... |
3NPM | Crystal Structure of the C47A/A241C disulfide-linked C6 Aspartate Transcarbamoylase enzyme | A Cooperative Escherichia coli Aspartate Transcarbamoylase
without Regulatory Subunits†,‡
Kimberly R. Mendes and Evan R. Kantrowitz*,§
Department of Chemistry, Boston College, Merkert Chemistry Center, Chestnut Hill, MA 02467
Abstract
Here we report the isolation, kinetic characterization, and X-ray structure determina... |
3NPN | Structure of the s-adenosylhomocysteine riboswitch at 3.0A | Structural basis for recognition of S-adenosylhomocysteine
by riboswitches
ANDREA L. EDWARDS,1 FRANCIS E. REYES,1 ANNIE HE´ROUX,2 and ROBERT T. BATEY1
1Department of Chemistry and Biochemistry, University of Colorado at Boulder, Boulder, Colorado 80309-0215, USA
2Biology Department, Brookhaven National Laboratory, Upto... |
3NPQ | Structure of the S-adenosylhomocysteine riboswitch at 2.18 A | Structural basis for recognition of S-adenosylhomocysteine
by riboswitches
ANDREA L. EDWARDS,1 FRANCIS E. REYES,1 ANNIE HE´ROUX,2 and ROBERT T. BATEY1
1Department of Chemistry and Biochemistry, University of Colorado at Boulder, Boulder, Colorado 80309-0215, USA
2Biology Department, Brookhaven National Laboratory, Upto... |
3NPR | Crystal structure of the C(30) carotenoid dehydrosqualene synthase from S. aureus complexed with Presqualene diphosphate (PSPP) | Mechanism of action and inhibition of
dehydrosqualene synthase
Fu-Yang Lina,1, Chia-I Liub,c,d,1, Yi-Liang Liua, Yonghui Zhange, Ke Wange, Wen-Yih Jengc,d, Tzu-Ping Koc,d, Rong Caoe,
Andrew H.-J. Wangb,c,d,2, and Eric Oldfielda,e,2
aCenter for Biophysics and Computational Biology, University of Illinois at Urbana-Champ... |
3NPS | Crystal structure of membrane-type serine protease 1 (MT-SP1) in complex with the Fab Inhibitor S4 | A Reverse Binding Motif that Contributes to Specific Protease
Inhibition by Antibodies
Eric L. Schneider1,*, Melody S. Lee2,*, Aida Baharuddin1, David H. Goetz1, Christopher J.
Farady3, Mick Ward4, Cheng-I Wang1,5, and Charles S. Craik1,#
1Department of Pharmaceutical Chemistry, University of California, San Francisco,... |
3NPU | Optimization of the in silico designed Kemp eliminase KE70 by computational design and directed evolution | Optimization of the in silico designed Kemp eliminase KE70 by
computational design and directed evolution
Olga Khersonsky1, Daniela Röthlisberger2, Andrew M. Wollacott2, Paul Murphy2, Orly
Dym3, Shira Albeck3, Gert Kiss4, K. N. Houk4, David Baker2,5,6,*, and Dan S. Tawfik1,*
1Department of Biological Chemistry, Weizman... |
3NPV | Optimization of the in silico designed Kemp eliminase KE70 by computational design and directed evolution | Optimization of the in silico designed Kemp eliminase KE70 by
computational design and directed evolution
Olga Khersonsky1, Daniela Röthlisberger2, Andrew M. Wollacott2, Paul Murphy2, Orly
Dym3, Shira Albeck3, Gert Kiss4, K. N. Houk4, David Baker2,5,6,*, and Dan S. Tawfik1,*
1Department of Biological Chemistry, Weizman... |
3NPW | In silico designed of an improved Kemp eliminase KE70 mutant by computational design and directed evolution | Optimization of the in silico designed Kemp eliminase KE70 by
computational design and directed evolution
Olga Khersonsky1, Daniela Röthlisberger2, Andrew M. Wollacott2, Paul Murphy2, Orly
Dym3, Shira Albeck3, Gert Kiss4, K. N. Houk4, David Baker2,5,6,*, and Dan S. Tawfik1,*
1Department of Biological Chemistry, Weizman... |
3NPX | Optimization of the in silico designed Kemp eliminase KE70 by computational design and directed evolution | Optimization of the in silico designed Kemp eliminase KE70 by
computational design and directed evolution
Olga Khersonsky1, Daniela Röthlisberger2, Andrew M. Wollacott2, Paul Murphy2, Orly
Dym3, Shira Albeck3, Gert Kiss4, K. N. Houk4, David Baker2,5,6,*, and Dan S. Tawfik1,*
1Department of Biological Chemistry, Weizman... |
3NQ2 | Optimization of the in silico designed Kemp eliminase KE70 by computational design and directed evolution R2 3/5G | Optimization of the in silico designed Kemp eliminase KE70 by
computational design and directed evolution
Olga Khersonsky1, Daniela Röthlisberger2, Andrew M. Wollacott2, Paul Murphy2, Orly
Dym3, Shira Albeck3, Gert Kiss4, K. N. Houk4, David Baker2,5,6,*, and Dan S. Tawfik1,*
1Department of Biological Chemistry, Weizman... |
3NQ8 | Optimization of the in silico designed Kemp eliminase KE70 by computational design and directed evolution R4 8/5A | Optimization of the in silico designed Kemp eliminase KE70 by
computational design and directed evolution
Olga Khersonsky1, Daniela Röthlisberger2, Andrew M. Wollacott2, Paul Murphy2, Orly
Dym3, Shira Albeck3, Gert Kiss4, K. N. Houk4, David Baker2,5,6,*, and Dan S. Tawfik1,*
1Department of Biological Chemistry, Weizman... |
3NQC | Crystal structure of the mutant I96S of orotidine 5'-monophosphate decarboxylase from Methanobacterium thermoautotrophicum complexed with inhibitor BMP | Mechanism of the Orotidine 5’-Monophosphate Decarboxylase-
Catalyzed Reaction: Importance of Residues in the Orotate
Binding Site†
Vanessa Iiams‡, Bijoy J. Desai‡, Alexander A. Fedorov§, Elena V. Fedorov§, Steven C.
Almo§, and John A. Gerlt‡,*
‡Departments of Biochemistry and Chemistry, University of Illinois at Urbana... |
3NQD | Crystal structure of the mutant I96T of orotidine 5'-monophosphate decarboxylase from Methanobacterium thermoautotrophicum complexed with inhibitor BMP | Mechanism of the Orotidine 5’-Monophosphate Decarboxylase-
Catalyzed Reaction: Importance of Residues in the Orotate
Binding Site†
Vanessa Iiams‡, Bijoy J. Desai‡, Alexander A. Fedorov§, Elena V. Fedorov§, Steven C.
Almo§, and John A. Gerlt‡,*
‡Departments of Biochemistry and Chemistry, University of Illinois at Urbana... |
3NQE | Crystal structure of the mutant L123N of orotidine 5'-monophosphate decarboxylase from Methanobacterium thermoautotrophicum complexed with inhibitor BMP | Mechanism of the Orotidine 5’-Monophosphate Decarboxylase-
Catalyzed Reaction: Importance of Residues in the Orotate
Binding Site†
Vanessa Iiams‡, Bijoy J. Desai‡, Alexander A. Fedorov§, Elena V. Fedorov§, Steven C.
Almo§, and John A. Gerlt‡,*
‡Departments of Biochemistry and Chemistry, University of Illinois at Urbana... |
3NQF | Crystal structure of the mutant L123S of orotidine 5'-monophosphate decarboxylase from Methanobacterium thermoautotrophicum complexed with inhibitor BMP | Mechanism of the Orotidine 5’-Monophosphate Decarboxylase-
Catalyzed Reaction: Importance of Residues in the Orotate
Binding Site†
Vanessa Iiams‡, Bijoy J. Desai‡, Alexander A. Fedorov§, Elena V. Fedorov§, Steven C.
Almo§, and John A. Gerlt‡,*
‡Departments of Biochemistry and Chemistry, University of Illinois at Urbana... |
3NQG | Crystal structure of the mutant V155D of orotidine 5'-monophosphate decarboxylase from Methanobacterium thermoautotrophicum complexed with inhibitor BMP | Mechanism of the Orotidine 5’-Monophosphate Decarboxylase-
Catalyzed Reaction: Importance of Residues in the Orotate
Binding Site†
Vanessa Iiams‡, Bijoy J. Desai‡, Alexander A. Fedorov§, Elena V. Fedorov§, Steven C.
Almo§, and John A. Gerlt‡,*
‡Departments of Biochemistry and Chemistry, University of Illinois at Urbana... |
3NQJ | Crystal structure of (CENP-A/H4)2 heterotetramer | The Structure of (CENP-A/H4)2 Reveals Physical Features that
Mark Centromeres
Nikolina Sekulic1, Emily A. Bassett1,2, Danielle J. Rogers1, and Ben E. Black1,2,*
1Department of Biochemistry and Biophysics, University of Pennsylvania, School of Medicine,
Philadelphia, PA 19104-6059
2Graduate Group in Biochemistry and M... |
3NQM | Crystal structure of the mutant V155S of orotidine 5'-monophosphate decarboxylase from Methanobacterium thermoautotrophicum complexed with inhibitor BMP | Mechanism of the Orotidine 5’-Monophosphate Decarboxylase-
Catalyzed Reaction: Importance of Residues in the Orotate
Binding Site†
Vanessa Iiams‡, Bijoy J. Desai‡, Alexander A. Fedorov§, Elena V. Fedorov§, Steven C.
Almo§, and John A. Gerlt‡,*
‡Departments of Biochemistry and Chemistry, University of Illinois at Urbana... |
3NQS | Crystal Structure of Inducible Nitric Oxide Synthase with N-Nitrosated-pterin | Nitric-oxide Synthase Forms N-NO-pterin and S-NO-Cys
IMPLICATIONS FOR ACTIVITY, ALLOSTERY, AND REGULATION*□
S
Received for publication,October 5, 2009, and in revised form, July 7, 2010 Published, JBC Papers in Press,July 21, 2010, DOI 10.1074/jbc.M109.072496
Robin J. Rosenfeld‡1, Joseph Bonaventura§**‡‡1, Blair R. Szy... |
3NQT | Crystal structure of Staphylococcal nuclease variant Delta+PHS V66A at cryogenic temperature | Cavities determine the pressure unfolding of proteins
Julien Rochea,1, Jose A. Carob,1, Douglas R. Norbertoa,c, Philippe Barthea, Christian Roumestanda, Jamie L. Schlessmand,
Angel E. Garciae, Bertrand García-Moreno E.b, and Catherine A. Royera,2
aCentre de Biochimie Structurale, Institut National pour la Santé et la R... |
3NQU | Crystal structure of partially trypsinized (CENP-A/H4)2 heterotetramer | The Structure of (CENP-A/H4)2 Reveals Physical Features that
Mark Centromeres
Nikolina Sekulic1, Emily A. Bassett1,2, Danielle J. Rogers1, and Ben E. Black1,2,*
1Department of Biochemistry and Biophysics, University of Pennsylvania, School of Medicine,
Philadelphia, PA 19104-6059
2Graduate Group in Biochemistry and M... |
3NQV | Optimization of the in silico designed Kemp eliminase KE70 by computational design and directed evolution R5 7/4A | Optimization of the in silico designed Kemp eliminase KE70 by
computational design and directed evolution
Olga Khersonsky1, Daniela Röthlisberger2, Andrew M. Wollacott2, Paul Murphy2, Orly
Dym3, Shira Albeck3, Gert Kiss4, K. N. Houk4, David Baker2,5,6,*, and Dan S. Tawfik1,*
1Department of Biological Chemistry, Weizman... |
3NQX | Crystal structure of vibriolysin MCP-02 mature enzyme, a zinc metalloprotease from M4 family | Structural basis for the autoprocessing of zinc
metalloproteases in the thermolysin family
Xiang Gaoa,b, Jue Wangb, Da-Qi Yuc, Fei Biana, Bin-Bin Xiea, Xiu-Lan Chena, Bai-Cheng Zhoua, Lu-Hua Laic, Zhi-Xin Wangb,
Jia-Wei Wub,1, and Yu-Zhong Zhanga,1
aState Key Laboratory of Microbial Technology, Marine Biotechnology Res... |
3NQY | Crystal structure of the autoprocessed complex of Vibriolysin MCP-02 with a single point mutation E346A | Structural basis for the autoprocessing of zinc
metalloproteases in the thermolysin family
Xiang Gaoa,b, Jue Wangb, Da-Qi Yuc, Fei Biana, Bin-Bin Xiea, Xiu-Lan Chena, Bai-Cheng Zhoua, Lu-Hua Laic, Zhi-Xin Wangb,
Jia-Wei Wub,1, and Yu-Zhong Zhanga,1
aState Key Laboratory of Microbial Technology, Marine Biotechnology Res... |
3NQZ | Crystal structure of the autoprocessed Vibriolysin MCP-02 with E369A mutation | Structural basis for the autoprocessing of zinc
metalloproteases in the thermolysin family
Xiang Gaoa,b, Jue Wangb, Da-Qi Yuc, Fei Biana, Bin-Bin Xiea, Xiu-Lan Chena, Bai-Cheng Zhoua, Lu-Hua Laic, Zhi-Xin Wangb,
Jia-Wei Wub,1, and Yu-Zhong Zhanga,1
aState Key Laboratory of Microbial Technology, Marine Biotechnology Res... |
3NR0 | Optimization of the in silico designed Kemp eliminase KE70 by computational design and directed evolution R6 6/10A | Optimization of the in silico designed Kemp eliminase KE70 by
computational design and directed evolution
Olga Khersonsky1, Daniela Röthlisberger2, Andrew M. Wollacott2, Paul Murphy2, Orly
Dym3, Shira Albeck3, Gert Kiss4, K. N. Houk4, David Baker2,5,6,*, and Dan S. Tawfik1,*
1Department of Biological Chemistry, Weizman... |
3NR2 | Crystal structure of Caspase-6 zymogen | Crystal structures of human caspase 6 reveal a new
mechanism for intramolecular cleavage self-activation
Xiao-Jun Wang1,Qin Cao1,Xiang Liu1,Kai-Tuo Wang1,Wei Mi1,Yan Zhang2,Lan-FenLi1,Andrea C.LeBlanc3+
& Xiao-Dong Su1,2++
1National Laboratory of Protein Engineering & Plant Genetic Engineering, and 2School of Life Scie... |
3NR4 | Pyrabactin-bound PYL2 | Single Amino Acid Alteration between Valine and Isoleucine
Determines the Distinct Pyrabactin Selectivity by PYL1
and PYL2*
Received for publication,June 30, 2010, and in revised form, July 8, 2010 Published, JBC Papers in Press,July 14, 2010, DOI 10.1074/jbc.M110.160192
Xiaoqiu Yuan1, Ping Yin1, Qi Hao1, Chuangye Yan,... |
3NR6 | Crystal structure of xenotropic murine leukemia virus-related virus (XMRV) protease | Crystal structure of XMRV protease differs from the structures of
other retropepsins
Mi Li1,2, Frank DiMaio3, Dongwen Zhou1, Alla Gustchina1, Jacek Lubkowski4, Zbigniew
Dauter5, David Baker3, and Alexander Wlodawer1,*
1 Protein Structure Section, Macromolecular Crystallography Laboratory, National Cancer
Institute a... |
3NR7 | Crystal structure of S. typhimurium H-NS 1-83 | H-NS forms a superhelical protein
scaffold for DNA condensation
Stefan T. Arolda, Paul G. Leonardb,2, Gary N. Parkinsonc, and John E. Ladburya,b,1
aDepartment of Biochemistry and Molecular Biology, University of Texas, M. D. Anderson Cancer Center, Unit 1000, 1515 Holcombe Boulevard, Houston,
TX 77030; bDepartment of S... |
3NRC | Crystal Structure of the Francisella tularensis enoyl-acyl carrier protein reductase (FabI) in complex with NAD+ and triclosan | structural communications
1436
doi:10.1107/S1744309110039862
Acta Cryst. (2010). F66, 1436–1440
Acta Crystallographica Section F
Structural Biology
and Crystallization
Communications
ISSN 1744-3091
Structure of the Francisella tularensis enoyl-acyl
carrier protein reductase (FabI) in complex with
NAD+ and triclosan
Sha... |
3NRI | Crystal structure of the C(30) carotenoid dehydrosqualene synthase from S. aureus complexed with dehydrosqualene (DHS) | Mechanism of action and inhibition of
dehydrosqualene synthase
Fu-Yang Lina,1, Chia-I Liub,c,d,1, Yi-Liang Liua, Yonghui Zhange, Ke Wange, Wen-Yih Jengc,d, Tzu-Ping Koc,d, Rong Caoe,
Andrew H.-J. Wangb,c,d,2, and Eric Oldfielda,e,2
aCenter for Biophysics and Computational Biology, University of Illinois at Urbana-Champ... |
3NRP | Crystal structure of 'as isolated' uropathogenic E. coli strain F11 FetP recombinantly expressed in the periplasm of E. coli BL21(DE3) | Characterization of a Dipartite Iron Uptake System from
Uropathogenic Escherichia coli Strain F11*□
S
Received for publication,January 18, 2011, and in revised form, April 25, 2011 Published, JBC Papers in Press,May 19, 2011, DOI 10.1074/jbc.M111.222745
Doreen Koch‡, Anson C. K. Chan§, Michael E. P. Murphy§, Hauke Lili... |
3NRQ | Crystal structure of copper-reconstituted FetP from uropathogenic Escherichia coli strain F11 | Characterization of a Dipartite Iron Uptake System from
Uropathogenic Escherichia coli Strain F11*□
S
Received for publication,January 18, 2011, and in revised form, April 25, 2011 Published, JBC Papers in Press,May 19, 2011, DOI 10.1074/jbc.M111.222745
Doreen Koch‡, Anson C. K. Chan§, Michael E. P. Murphy§, Hauke Lili... |
3NRR | Co-crystal structure of dihydrofolate reductase-thymidylate synthase from Babesia bovis with dUMP, Raltitrexed and NADP | structural communications
1070
doi:10.1107/S1744309111029009
Acta Cryst. (2011). F67, 1070–1077
Acta Crystallographica Section F
Structural Biology
and Crystallization
Communications
ISSN 1744-3091
Inhibitor-bound complexes of dihydrofolate
reductase-thymidylate synthase from Babesia bovis
Darren W. Begley,a,b* Thomas ... |
3NRX | Insights into anti-parallel microtubule crosslinking by PRC1, a conserved non-motor microtubule binding protein | INSIGHTS INTO ANTI-PARALLEL MICROTUBULE
CROSSLINKING BY PRC1, A CONSERVED NON-MOTOR
MICROTUBULE BINDING PROTEIN
Radhika Subramanian1, Elizabeth M. Wilson-Kubalek2, Christopher P. Arthur2, Matthew J.
Bick3, Elizabeth A. Campbell3, Seth A. Darst3, Ronald A. Milligan2, and Tarun M. Kapoor1
1Laboratory of Chemistry and Cel... |
3NRY | Insights into anti-parallel microtubule crosslinking by PRC1, a conserved microtubule binding protein | INSIGHTS INTO ANTI-PARALLEL MICROTUBULE
CROSSLINKING BY PRC1, A CONSERVED NON-MOTOR
MICROTUBULE BINDING PROTEIN
Radhika Subramanian1, Elizabeth M. Wilson-Kubalek2, Christopher P. Arthur2, Matthew J.
Bick3, Elizabeth A. Campbell3, Seth A. Darst3, Ronald A. Milligan2, and Tarun M. Kapoor1
1Laboratory of Chemistry and Cel... |
3NRZ | Crystal Structure of Bovine Xanthine Oxidase in Complex with Hypoxanthine | Substrate Orientation and Catalytic Specificity in the Action
of Xanthine Oxidase
THE SEQUENTIAL HYDROXYLATION OF HYPOXANTHINE TO URIC ACID*□
S
Received for publication,March 31, 2010, and in revised form, May 27, 2010 Published, JBC Papers in Press,July 8, 2010, DOI 10.1074/jbc.M110.128561
Hongnan Cao‡, James M. Pauff... |
3NS1 | Crystal Structure of Bovine Xanthine Oxidase in Complex with 6-Mercaptopurine | Substrate Orientation and Catalytic Specificity in the Action
of Xanthine Oxidase
THE SEQUENTIAL HYDROXYLATION OF HYPOXANTHINE TO URIC ACID*□
S
Received for publication,March 31, 2010, and in revised form, May 27, 2010 Published, JBC Papers in Press,July 8, 2010, DOI 10.1074/jbc.M110.128561
Hongnan Cao‡, James M. Pauff... |
3NS2 | High-resolution structure of pyrabactin-bound PYL2 | Single Amino Acid Alteration between Valine and Isoleucine
Determines the Distinct Pyrabactin Selectivity by PYL1
and PYL2*
Received for publication,June 30, 2010, and in revised form, July 8, 2010 Published, JBC Papers in Press,July 14, 2010, DOI 10.1074/jbc.M110.160192
Xiaoqiu Yuan1, Ping Yin1, Qi Hao1, Chuangye Yan,... |
3NS4 | Structure of a C-terminal fragment of its Vps53 subunit suggests similarity of GARP to a family of tethering complexes | Structure of a C-terminal fragment of its Vps53 subunit
suggestssimilarityofGolgi-associatedretrogradeprotein
(GARP) complex to a family of tethering complexes
Neil Vasana, Alex Hutagalungb, Peter Novickb, and Karin M. Reinischa,1
aDepartment of Cell Biology, Yale University School of Medicine, New Haven, CT 06520; and... |
3NS5 | Crystal structure of the RNA recognition motif of yeast eIF3b residues 76-161 | Crystal Structure of the RNA Recognition Motif of Yeast
Translation Initiation Factor eIF3b Reveals Differences to
Human eIF3b
Sohail Khoshnevis, Piotr Neumann, Ralf Ficner*
Department of Molecular Structural Biology, Institute of Microbiology and Genetics, Georg-August University Go¨ttingen, Go¨ttingen, Germany
Abstra... |
3NS6 | Crystal structure of hte RNA recognition motif of yeast eIF3b residues 76-170 | Crystal Structure of the RNA Recognition Motif of Yeast
Translation Initiation Factor eIF3b Reveals Differences to
Human eIF3b
Sohail Khoshnevis, Piotr Neumann, Ralf Ficner*
Department of Molecular Structural Biology, Institute of Microbiology and Genetics, Georg-August University Go¨ttingen, Go¨ttingen, Germany
Abstra... |
3NS8 | Crystal structure of an open conformation of Lys48-linked diubiquitin at pH 7.5 | Structural and biochemical studies of the open state of Lys48-
linked diubiquitin
Ming-Yih Lai, Daoning Zhang, Nicole LaRonde-LeBlanc, and David Fushman*
Department of Chemistry and Biochemistry, Center for Biomolecular Structure and Organization,
University of Maryland, College Park, Maryland, 20742, USA
Abstract
Ubiq... |
3NSC | C500S MUTANT OF CueO BOUND TO Cu(II) | Crystal Structures of Multicopper Oxidase CueO Bound to
Copper(I) and Silver(I)
FUNCTIONAL ROLE OF A METHIONINE-RICH SEQUENCE*□
S
Received for publication,August 12, 2011, and in revised form, September 1, 2011 Published, JBC Papers in Press,September 8, 2011, DOI 10.1074/jbc.M111.293589
Satish K. Singh‡, Sue A. Robert... |
3NSD | Silver bound to the multicopper oxidase CueO (untagged) | Crystal Structures of Multicopper Oxidase CueO Bound to
Copper(I) and Silver(I)
FUNCTIONAL ROLE OF A METHIONINE-RICH SEQUENCE*□
S
Received for publication,August 12, 2011, and in revised form, September 1, 2011 Published, JBC Papers in Press,September 8, 2011, DOI 10.1074/jbc.M111.293589
Satish K. Singh‡, Sue A. Robert... |
3NSF | Apo form of the multicopper oxidase CueO | Crystal Structures of Multicopper Oxidase CueO Bound to
Copper(I) and Silver(I)
FUNCTIONAL ROLE OF A METHIONINE-RICH SEQUENCE*□
S
Received for publication,August 12, 2011, and in revised form, September 1, 2011 Published, JBC Papers in Press,September 8, 2011, DOI 10.1074/jbc.M111.293589
Satish K. Singh‡, Sue A. Robert... |
3NSM | Crystal Structure of insect beta-N-acetyl-D-hexosaminidase OfHex1 from Ostrinia furnacalis | StructuralDeterminantsofanInsect-N-Acetyl-D-hexosaminidase
Specialized as a Chitinolytic Enzyme*□
S
Received for publication,September14,2010,andinrevisedform,November14,2010 Published, JBC Papers in Press,November24,2010,DOI10.1074/jbc.M110.184796
Tian Liu‡1, Haitao Zhang§1, Fengyi Liu‡, Qingyue Wu‡, Xu Shen§¶2, and ... |
3NSN | Crystal Structure of insect beta-N-acetyl-D-hexosaminidase OfHex1 complexed with TMG-chitotriomycin | StructuralDeterminantsofanInsect-N-Acetyl-D-hexosaminidase
Specialized as a Chitinolytic Enzyme*□
S
Received for publication,September14,2010,andinrevisedform,November14,2010 Published, JBC Papers in Press,November24,2010,DOI10.1074/jbc.M110.184796
Tian Liu‡1, Haitao Zhang§1, Fengyi Liu‡, Qingyue Wu‡, Xu Shen§¶2, and ... |
3NSP | Crystal structure of tetrameric RXRalpha-LBD | Danthron Functions as a Retinoic X Receptor Antagonist by
Stabilizing Tetramers of the Receptor*
Received for publication,July 20, 2010, and in revised form, November 5, 2010 Published, JBC Papers in Press,November 17, 2010, DOI 10.1074/jbc.M110.166215
Haitao Zhang‡1, Rong Zhou§1, Li Li§, Jing Chen‡, Lili Chen‡, Chenji... |
3NSQ | Crystal structure of tetrameric RXRalpha-LBD complexed with antagonist danthron | Danthron Functions as a Retinoic X Receptor Antagonist by
Stabilizing Tetramers of the Receptor*
Received for publication,July 20, 2010, and in revised form, November 5, 2010 Published, JBC Papers in Press,November 17, 2010, DOI 10.1074/jbc.M110.166215
Haitao Zhang‡1, Rong Zhou§1, Li Li§, Jing Chen‡, Lili Chen‡, Chenji... |
3NSU | A Systematic Screen for Protein-Lipid Interactions in Saccharomyces cerevisiae | A systematic screen for protein–lipid interactions
in Saccharomyces cerevisiae
Oriol Gallego1, Matthew J Betts1,4, Jelena Gvozdenovic-Jeremic1, Kenji Maeda1, Christian Matetzki1, Carmen Aguilar-Gurrieri1,
Pedro Beltran-Alvarez1, Stefan Bonn1, Carlos Ferna´ndez-Tornero1,5, Lars Juhl Jensen1,6, Michael Kuhn1,7, Jamie Tro... |
3NSW | Crystal Structure of Ancylostoma ceylanicum Excretory-Secretory Protein 2 | Ancylostoma ceylanicum Excretory-Secretory Protein 2 Adopts
a Netrin-Like Fold and Defines a Novel Family of Nematode
Proteins
Kaury Kuceraa, Lisa M. Harrisonb, Michael Cappellob,*, and Yorgo Modisa,‡
aDepartment of Molecular Biophysics and Biochemistry, Yale University, 266 Whitney Avenue,
New Haven, CT 06520, USA
bCh... |
3NSY | The multi-copper oxidase CueO with six Met to Ser mutations (M358S,M361S,M362S,M364S,M366S,M368S) | Crystal Structures of Multicopper Oxidase CueO Bound to
Copper(I) and Silver(I)
FUNCTIONAL ROLE OF A METHIONINE-RICH SEQUENCE*□
S
Received for publication,August 12, 2011, and in revised form, September 1, 2011 Published, JBC Papers in Press,September 8, 2011, DOI 10.1074/jbc.M111.293589
Satish K. Singh‡, Sue A. Robert... |
3NT0 | C500S (T1D) Mutant of CueO soaked in and bound to Cu(I) | Crystal Structures of Multicopper Oxidase CueO Bound to
Copper(I) and Silver(I)
FUNCTIONAL ROLE OF A METHIONINE-RICH SEQUENCE*□
S
Received for publication,August 12, 2011, and in revised form, September 1, 2011 Published, JBC Papers in Press,September 8, 2011, DOI 10.1074/jbc.M111.293589
Satish K. Singh‡, Sue A. Robert... |
3NT1 | High resolution structure of naproxen:COX-2 complex. | Molecular Basis for Cyclooxygenase Inhibition by the
Non-steroidal Anti-inflammatory Drug Naproxen*□
S
Received for publication,July 9, 2010, and in revised form, August 19, 2010 Published, JBC Papers in Press,September 1, 2010, DOI 10.1074/jbc.M110.162982
Kelsey C. Duggan‡1, Matthew J. Walters‡, Joel Musee‡, Joel M. H... |
3NT3 | CRYSTAL STRUCTURE OF LSSmKate2 red fluorescent proteins with large Stokes shift | Engineering ESPT pathways based on structural analysis of
LSSmKate red fluorescent proteins with large Stokes shift
Kiryl D. Piatkevich|, Vladimir N. Malashkevich||, Steven C. Almo||, and Vladislav V.
Verkhusha|,*
| Department of Anatomy and Structural Biology, and Gruss-Lipper Biophotonics Center, 1300
Morris Park Ave... |
3NT7 | Crystal Structure of Vaccinia Virus Uracil DNA Glycosylase R187V Mutant | JOURNAL OF VIROLOGY, Dec. 2010, p. 12325–12335
Vol. 84, No. 23
0022-538X/10/$12.00
doi:10.1128/JVI.01435-10
Copyright © 2010, American Society for Microbiology. All Rights Reserved.
Vaccinia Virus D4 Mutants Defective in Processive DNA Synthesis
Retain Binding to A20 and DNA
Abigail M. Druck Shudofsky,1 Janice Elaine ... |
3NT8 | Crystal Structure of Na-ASP-1 | research papers
Acta Cryst. (2011). D67, 455–462
doi:10.1107/S0907444911008560
455
Acta Crystallographica Section D
Biological
Crystallography
ISSN 0907-4449
Structure of a two-CAP-domain protein from the
human hookworm parasite Necator americanus
Oluwatoyin A. Asojo
Pathology and Microbiology Department,
986495 Nebras... |
3NT9 | CRYSTAL STRUCTURE OF LSSmKate1 red fluorescent proteins with large Stokes shift | Engineering ESPT pathways based on structural analysis of
LSSmKate red fluorescent proteins with large Stokes shift
Kiryl D. Piatkevich|, Vladimir N. Malashkevich||, Steven C. Almo||, and Vladislav V.
Verkhusha|,*
| Department of Anatomy and Structural Biology, and Gruss-Lipper Biophotonics Center, 1300
Morris Park Ave... |
3NTB | Structure of 6-methylthio naproxen analog bound to mCOX-2. | Molecular Basis for Cyclooxygenase Inhibition by the
Non-steroidal Anti-inflammatory Drug Naproxen*□
S
Received for publication,July 9, 2010, and in revised form, August 19, 2010 Published, JBC Papers in Press,September 1, 2010, DOI 10.1074/jbc.M110.162982
Kelsey C. Duggan‡1, Matthew J. Walters‡, Joel Musee‡, Joel M. H... |
3NTE | Crystal Structure of the Wild-type Full-Length HIV-1 Capsid Protein | Structure of the HIV-1 Full-Length Capsid in a Conformationally-
Trapped Unassembled State Induced by Small-Molecule Binding
Shoucheng Du1,*, Laurie Betts1,*, Ruifeng Yang2, Haibin Shi1, Jason Concel1, Jinwoo
Ahn1,3, Christopher Aiken2, Peijun Zhang1,3, and Joanne I. Yeh1,3,§
1Department of Structural Biology, Universi... |
3NTH | Crystal structure of Tudor and Aubergine [R13(me2s)] complex | RESEARCH COMMUNICATION
Structural basis for
methylarginine-dependent
recognition of Aubergine
by Tudor
Haiping Liu,1,2,6 Ju-Yu S. Wang,3,6 Ying Huang,3,6,7
Zhizhong Li,3 Weimin Gong,1 Ruth Lehmann,3,4,5,9
and Rui-Ming Xu1,8
1National Laboratory of Biomacromolecules, Institute of
Biophysics, Chinese Academy of Sciences,... |
3NTI | Crystal structure of Tudor and Aubergine [R15(me2s)] complex | RESEARCH COMMUNICATION
Structural basis for
methylarginine-dependent
recognition of Aubergine
by Tudor
Haiping Liu,1,2,6 Ju-Yu S. Wang,3,6 Ying Huang,3,6,7
Zhizhong Li,3 Weimin Gong,1 Ruth Lehmann,3,4,5,9
and Rui-Ming Xu1,8
1National Laboratory of Biomacromolecules, Institute of
Biophysics, Chinese Academy of Sciences,... |
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