Author results

2KLJ
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SOLUTION STRUCTURE OF GAMMAD-CRYSTALLIN WITH RDC AND SAXS
Descriptor:Gamma-crystallin D
Authors:Wang, J., Zuo, X., Yu, P., Byeon, I., Jung, J., Gronenborn, A.M., Wang, Y.
Deposit date:2009-07-06
Release date:2009-10-06
Last modified:2010-04-07
Method:SOLUTION SCATTERING, SOLUTION NMR
Cite:Determination of multicomponent protein structures in solution using global orientation and shape restraints.
J.Am.Chem.Soc., 131, 2009
2KLM
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SOLUTION STRUCTURE OF L11 WITH SAXS AND RDC
Descriptor:50S ribosomal protein L11
Authors:Wang, J., Zuo, X., Yu, P., Schwieters, C.D., Wang, Y.
Deposit date:2009-07-06
Release date:2009-10-06
Last modified:2010-04-07
Method:SOLUTION SCATTERING, SOLUTION NMR
Cite:Determination of multicomponent protein structures in solution using global orientation and shape restraints.
J.Am.Chem.Soc., 131, 2009
4OH4
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CRYSTAL STRUCTURE OF BRI1 IN COMPLEX WITH BKI1
Descriptor:Protein BRASSINOSTEROID INSENSITIVE 1 (E.C.2.7.10.1, 2.7.11.1), BRI1 kinase inhibitor 1
Authors:Wang, J., Wang, J., Wu, J.W., Wang, Z.X.
Deposit date:2014-01-17
Release date:2014-10-29
Last modified:2014-11-19
Method:X-RAY DIFFRACTION (2.25 Å)
Cite:Structural insights into the negative regulation of BRI1 signaling by BRI1-interacting protein BKI1.
Cell Res., 24, 2014
4Q5J
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CRYSTAL STRUCTURE OF SEMET DERIVATIVE BRI1 IN COMPLEX WITH BKI1
Descriptor:Protein BRASSINOSTEROID INSENSITIVE 1 (E.C.2.7.10.1, 2.7.11.1), BRI1 kinase inhibitor 1
Authors:Wang, J., Wang, J., Chen, L., Wu, J.W., Wang, Z.X.
Deposit date:2014-04-17
Release date:2014-10-29
Method:X-RAY DIFFRACTION (2.772 Å)
Cite:Structural insights into the negative regulation of BRI1 signaling by BRI1-interacting protein BKI1
Cell Res., 2014
5DLJ
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CRYSTAL STRUCTURE OF CAS-DNA-N1 COMPLEX
Descriptor:CRISPR-associated endonuclease Cas1, CRISPR-associated endoribonuclease Cas2/DNA Complex
Authors:Wang, J., Li, J., Zhao, H., Sheng, G., Wang, M., Yin, M., Wang, Y.
Deposit date:2015-09-05
Release date:2015-11-11
Last modified:2015-11-18
Method:X-RAY DIFFRACTION (2.6 Å)
Cite:Structural and Mechanistic Basis of PAM-Dependent Spacer Acquisition in CRISPR-Cas Systems.
Cell, 163, 2015
5DQT
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CRYSTAL STRUCTURE OF CAS-DNA-22 COMPLEX
Descriptor:CRISPR-associated endonuclease Cas1, CRISPR-associated endoribonuclease Cas2/DNA Complex
Authors:Wang, J., Li, J., Zhao, H., Sheng, G., Wang, M., Yin, M., Wang, Y.
Deposit date:2015-09-15
Release date:2015-11-11
Last modified:2015-11-18
Method:X-RAY DIFFRACTION (3.1 Å)
Cite:Structural and Mechanistic Basis of PAM-Dependent Spacer Acquisition in CRISPR-Cas Systems.
Cell, 163, 2015
5DQU
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CRYSTAL STRUCTURE OF CAS-DNA-10 COMPLEX
Descriptor:CRISPR-associated endonuclease Cas1, CRISPR-associated endoribonuclease Cas2/DNA Complex
Authors:Wang, J., Li, J., Zhao, H., Sheng, G., Wang, M., Yin, M., Wang, Y.
Deposit date:2015-09-15
Release date:2015-11-11
Last modified:2015-11-18
Method:X-RAY DIFFRACTION (4.5 Å)
Cite:Structural and Mechanistic Basis of PAM-Dependent Spacer Acquisition in CRISPR-Cas Systems.
Cell, 163, 2015
5DQZ
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CRYSTAL STRUCTURE OF CAS-DNA-PAM COMPLEX
Descriptor:CRISPR-associated endonuclease Cas1, CRISPR-associated endoribonuclease Cas2/DNA Complex
Authors:Wang, J., Li, J., Zhao, H., Sheng, G., Wang, M., Yin, M., Wang, Y.
Deposit date:2015-09-15
Release date:2015-11-11
Last modified:2015-11-18
Method:X-RAY DIFFRACTION (2.7 Å)
Cite:Structural and Mechanistic Basis of PAM-Dependent Spacer Acquisition in CRISPR-Cas Systems.
Cell, 163, 2015
1WAF
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DNA POLYMERASE FROM BACTERIOPHAGE RB69
Descriptor:DNA POLYMERASE, GUANOSINE
Authors:Wang, J., Satter, A.K.M.A., Wang, C.C., Karam, J.D., Konigsberg, W.H., Steitz, T.A.
Deposit date:1997-04-13
Release date:1998-01-14
Last modified:2009-02-24
Method:X-RAY DIFFRACTION (3.2 Å)
Cite:Crystal structure of a pol alpha family replication DNA polymerase from bacteriophage RB69.
Cell(Cambridge,Mass.), 89, 1997
1WAJ
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DNA POLYMERASE FROM BACTERIOPHAGE RB69
Descriptor:DNA POLYMERASE, GUANOSINE-5'-MONOPHOSPHATE
Authors:Wang, J., Satter, A.K.M.A., Wang, C.C., Karam, J.D., Konigsberg, W.H., Steitz, T.A.
Deposit date:1997-04-13
Release date:1998-01-14
Last modified:2009-02-24
Method:X-RAY DIFFRACTION (2.8 Å)
Cite:Crystal structure of a pol alpha family replication DNA polymerase from bacteriophage RB69.
Cell(Cambridge,Mass.), 89, 1997
2KLK
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SOLUTION STRUCTURE OF GB1 A34F MUTANT WITH RDC AND SAXS
Descriptor:GB1
Authors:Wang, J., Zuo, X., Yu, P., Byeon, I.L., Jung, J., Schwieters,C.D., Gronenborn, A.M., Wang, Y.
Deposit date:2009-07-06
Release date:2009-10-06
Last modified:2010-04-07
Method:SOLUTION SCATTERING, SOLUTION NMR
Cite:Determination of multicomponent protein structures in solution using global orientation and shape restraints.
J.Am.Chem.Soc., 131, 2009
3QZQ
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HUMAN ENTEROVIRUS 71 3C PROTEASE MUTANT E71D IN COMPLEX WITH RUPINTRIVIR
Descriptor:3C protein
Authors:Wang, J., Fan, T., Yao, X., Wu, Z., Guo, L., Lei, X., Wang, J., Wang, M., Jin, Q., Cui, S.
Deposit date:2011-03-07
Release date:2011-08-10
Last modified:2015-05-06
Method:X-RAY DIFFRACTION (1.7001 Å)
Cite:Crystal Structures of Enterovirus 71 3C Protease Complexed with Rupintrivir Reveal the Roles of Catalytically Important Residues.
J.Virol., 85, 2011
3QZR
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HUMAN ENTEROVIRUS 71 3C PROTEASE MUTANT E71A IN COMPLEX WITH RUPINTRIVIR
Descriptor:3C protein
Authors:Wang, J., Fan, T., Yao, X., Wu, Z., Guo, L., Lei, X., Wang, J., Wang, M., Jin, Q., Cui, S.
Deposit date:2011-03-07
Release date:2011-08-10
Last modified:2015-05-06
Method:X-RAY DIFFRACTION (1.039 Å)
Cite:Crystal Structures of Enterovirus 71 3C Protease Complexed with Rupintrivir Reveal the Roles of Catalytically Important Residues.
J.Virol., 85, 2011
3R0F
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HUMAN ENTEROVIRUS 71 3C PROTEASE MUTANT H133G IN COMPLEX WITH RUPINTRIVIR
Descriptor:3C protein
Authors:Wang, J., Fan, T., Yao, X., Wu, Z., Guo, L., Lei, X., Wang, J., Wang, M., Jin, Q., Cui, S.
Deposit date:2011-03-08
Release date:2011-08-10
Last modified:2015-05-06
Method:X-RAY DIFFRACTION (1.3083 Å)
Cite:Crystal Structures of Enterovirus 71 3C Protease Complexed with Rupintrivir Reveal the Roles of Catalytically Important Residues.
J.Virol., 85, 2011
1YYF
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CORRECTION OF X-RAY INTENSITIES FROM AN HSLV-HSLU CO-CRYSTAL CONTAINING LATTICE TRANSLOCATION DEFECTS
Descriptor:ATP-dependent hsl protease ATP-binding subunit hslU, ATP-dependent protease hslV (E.C.3.4.25.-)
Authors:Wang, J., Rho, S.H., Park, H.H., Eom, S.H.
Deposit date:2005-02-24
Release date:2005-07-12
Last modified:2009-02-24
Method:X-RAY DIFFRACTION (4.16 Å)
Cite:Correction of X-ray intensities from an HslV-HslU co-crystal containing lattice-translocation defects.
Acta Crystallogr.,Sect.D, 61, 2005
5GNF
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CRYSTAL STRUCTURE OF ANTI-CRISPR PROTEIN ACRF3
Descriptor:Uncharacterized protein AcrF3
Authors:Wang, J., Wang, Y.
Deposit date:2016-07-20
Release date:2016-09-21
Last modified:2016-10-19
Method:X-RAY DIFFRACTION (1.5 Å)
Cite:A CRISPR evolutionary arms race: structural insights into viral anti-CRISPR/Cas responses
Cell Res., 26, 2016
3Q4Z
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STRUCTURE OF UNPHOSPHORYLATED PAK1 KINASE DOMAIN
Descriptor:Serine/threonine-protein kinase PAK 1 (E.C.2.7.11.1)
Authors:Wang, J., Wu, J.-W., Wang, Z.-X.
Deposit date:2010-12-26
Release date:2011-12-21
Last modified:2012-04-11
Method:X-RAY DIFFRACTION (1.887 Å)
Cite:Structural insights into the autoactivation mechanism of p21-activated protein kinase
Structure, 19, 2011
3Q52
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STRUCTURE OF PHOSPHORYLATED PAK1 KINASE DOMAIN
Descriptor:Serine/threonine-protein kinase PAK 1 (E.C.2.7.11.1)
Authors:Wang, J., Wu, J.-W., Wang, Z.-X.
Deposit date:2010-12-26
Release date:2011-12-21
Last modified:2012-04-11
Method:X-RAY DIFFRACTION (1.801 Å)
Cite:Structural insights into the autoactivation mechanism of p21-activated protein kinase
Structure, 19, 2011
3Q53
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STRUCTURE OF PHOSPHORYLATED PAK1 KINASE DOMAIN IN COMPLEX WITH ATP
Descriptor:Serine/threonine-protein kinase PAK 1 (E.C.2.7.11.1)
Authors:Wang, J., Wu, J.-W., Wang, Z.-X.
Deposit date:2010-12-26
Release date:2011-12-21
Last modified:2012-04-11
Method:X-RAY DIFFRACTION (2.09 Å)
Cite:Structural insights into the autoactivation mechanism of p21-activated protein kinase
Structure, 19, 2011
4L3J
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CRYSTAL STRUCTURES OF HUMAN P70S6K1 KINASE DOMAIN
Descriptor:RPS6KB1 protein
Authors:Wang, J., Zhong, C., Ding, J.
Deposit date:2013-06-06
Release date:2013-07-24
Last modified:2013-09-04
Method:X-RAY DIFFRACTION (2.1 Å)
Cite:Crystal structures of S6K1 provide insights into the regulation mechanism of S6K1 by the hydrophobic motif
Biochem.J., 454, 2013
4L3L
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CRYSTAL STRUCTURES OF HUMAN P70S6K1 KINASE DOMAIN (ZINC ANOMALOUS)
Descriptor:RPS6KB1 protein
Authors:Wang, J., Zhong, C., Ding, J.
Deposit date:2013-06-06
Release date:2013-07-24
Last modified:2013-09-04
Method:X-RAY DIFFRACTION (2.1 Å)
Cite:Crystal structures of S6K1 provide insights into the regulation mechanism of S6K1 by the hydrophobic motif
Biochem.J., 454, 2013
4L42
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CRYSTAL STRUCTURES OF HUMAN P70S6K1-PIF
Descriptor:RPS6KB1 protein
Authors:Wang, J., Zhong, C., Ding, J.
Deposit date:2013-06-07
Release date:2013-07-24
Last modified:2013-09-04
Method:X-RAY DIFFRACTION (2.8 Å)
Cite:Crystal structures of S6K1 provide insights into the regulation mechanism of S6K1 by the hydrophobic motif
Biochem.J., 454, 2013
4L43
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CRYSTAL STRUCTURES OF HUMAN P70S6K1-T389A (FORM I)
Descriptor:RPS6KB1 protein
Authors:Wang, J., Zhong, C., Ding, J.
Deposit date:2013-06-07
Release date:2013-07-24
Last modified:2013-09-04
Method:X-RAY DIFFRACTION (3 Å)
Cite:Crystal structures of S6K1 provide insights into the regulation mechanism of S6K1 by the hydrophobic motif
Biochem.J., 454, 2013
4L44
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CRYSTAL STRUCTURES OF HUMAN P70S6K1-T389A (FORM II)
Descriptor:RPS6KB1 protein
Authors:Wang, J., Zhong, C., Ding, J.
Deposit date:2013-06-07
Release date:2013-07-24
Last modified:2013-09-04
Method:X-RAY DIFFRACTION (2.9 Å)
Cite:Crystal structures of S6K1 provide insights into the regulation mechanism of S6K1 by the hydrophobic motif
Biochem.J., 454, 2013
4L45
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CRYSTAL STRUCTURES OF HUMAN P70S6K1-T389E
Descriptor:RPS6KB1 protein
Authors:Wang, J., Zhong, C., Ding, J.
Deposit date:2013-06-07
Release date:2013-07-24
Last modified:2013-09-04
Method:X-RAY DIFFRACTION (2.9 Å)
Cite:Crystal structures of S6K1 provide insights into the regulation mechanism of S6K1 by the hydrophobic motif
Biochem.J., 454, 2013
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