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PDB: 24 results

1C3G
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S. CEREVISIAE HEAT SHOCK PROTEIN 40 SIS1
Descriptor: HEAT SHOCK PROTEIN 40
Authors:Sha, B, Lee, S, Cyr, D.
Deposit date:1999-07-27
Release date:2000-08-03
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (2.7 Å)
Cite:The crystal structure of the peptide-binding fragment from the yeast Hsp40 protein Sis1.
Structure, 8, 2000
1AUA
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PHOSPHATIDYLINOSITOL TRANSFER PROTEIN SEC14P FROM SACCHAROMYCES CEREVISIAE
Descriptor: PHOSPHATIDYLINOSITOL TRANSFER PROTEIN SEC14P, octyl beta-D-glucopyranoside
Authors:Sha, B, Phillips, S.E, Bankaitis, V.A, Luo, M.
Deposit date:1997-08-20
Release date:1997-12-24
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (2.5 Å)
Cite:Crystal structure of the Saccharomyces cerevisiae phosphatidylinositol-transfer protein.
Nature, 391, 1998
1AA7
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INFLUENZA VIRUS MATRIX PROTEIN CRYSTAL STRUCTURE AT PH 4.0
Descriptor: INFLUENZA VIRUS MATRIX PROTEIN
Authors:Sha, B, Luo, M.
Deposit date:1997-01-24
Release date:1998-01-28
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (2.08 Å)
Cite:Structure of a bifunctional membrane-RNA binding protein, influenza virus matrix protein M1.
Nat.Struct.Biol., 4, 1997
1NLT
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The crystal structure of Hsp40 Ydj1
Descriptor: Mitochondrial protein import protein MAS5, Seven residue peptide, ZINC ION
Authors:Li, J, Sha, B.
Deposit date:2003-01-07
Release date:2004-01-13
Last modified:2021-10-27
Method:X-RAY DIFFRACTION (2.7 Å)
Cite:The crystal structure of the yeast Hsp40 Ydj1 complexed with its peptide substrate.
Structure, 11, 2003
1ZTD
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Hypothetical Protein Pfu-631545-001 From Pyrococcus furiosus
Descriptor: Hypothetical Protein Pfu-631545-001
Authors:Fu, Z.-Q, Horanyi, P, Florence, Q, Liu, Z.-J, Chen, L, Lee, D, Habel, J, Xu, H, Nguyen, D, Chang, S.-H, Zhou, W, Zhang, H, Jenney Jr, F.E, Sha, B, Adams, M.W.W, Rose, J.P, Wang, B.-C, Southeast Collaboratory for Structural Genomics (SECSG)
Deposit date:2005-05-26
Release date:2005-06-07
Last modified:2024-02-14
Method:X-RAY DIFFRACTION (2 Å)
Cite:Hypothetical Protein Pfu-631545-001 From Pyrococcus furiosus
To be Published
2B26
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The crystal structure of the protein complex of yeast Hsp40 Sis1 and Hsp70 Ssa1
Descriptor: Heat shock 70 kDa protein cognate 2, SIS1 protein
Authors:Li, J, Wu, Y, Qian, X, Sha, B.
Deposit date:2005-09-16
Release date:2006-09-19
Last modified:2024-02-14
Method:X-RAY DIFFRACTION (3.2 Å)
Cite:Crystal structure of yeast Sis1 peptide-binding fragment and Hsp70 Ssa1 C-terminal complex.
Biochem.J., 398, 2006
1LPL
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Structural Genomics of Caenorhabditis elegans: CAP-Gly domain of F53F4.3
Descriptor: Hypothetical 25.4 kDa protein F53F4.3 in chromosome V
Authors:Li, S, Finley, J, Liu, Z.-J, Qiu, S.H, Luan, C.H, Carson, M, Tsao, J, Johnson, D, Lin, G, Zhao, J, Thomas, W, Nagy, L.A, Sha, B, DeLucas, L.J, Wang, B.-C, Luo, M, Southeast Collaboratory for Structural Genomics (SECSG)
Deposit date:2002-05-08
Release date:2002-05-22
Last modified:2024-02-14
Method:X-RAY DIFFRACTION (1.77 Å)
Cite:Crystal Structure of the Cytoskeleton-associated Protein Glycine-rich (CAP-Gly) Domain
J.Biol.Chem., 277, 2002
3FP2
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Crystal structure of Tom71 complexed with Hsp82 C-terminal fragment
Descriptor: ATP-dependent molecular chaperone HSP82, CHLORIDE ION, MAGNESIUM ION, ...
Authors:Li, J, Qian, X, Hu, J, Sha, B.
Deposit date:2009-01-03
Release date:2009-07-28
Last modified:2023-09-06
Method:X-RAY DIFFRACTION (1.98 Å)
Cite:Molecular chaperone Hsp70/Hsp90 prepares the mitochondrial outer membrane translocon receptor Tom71 for preprotein loading.
J.Biol.Chem., 284, 2009
3FP3
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Crystal structure of Tom71
Descriptor: CHLORIDE ION, SULFATE ION, TPR repeat-containing protein YHR117W
Authors:Li, J, Qian, X, Hu, J, Sha, B.
Deposit date:2009-01-03
Release date:2009-07-28
Last modified:2023-09-06
Method:X-RAY DIFFRACTION (1.98 Å)
Cite:Molecular chaperone Hsp70/Hsp90 prepares the mitochondrial outer membrane translocon receptor Tom71 for preprotein loading.
J.Biol.Chem., 284, 2009
3FP4
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Crystal structure of Tom71 complexed with Ssa1 C-terminal fragment
Descriptor: CHLORIDE ION, SODIUM ION, SULFATE ION, ...
Authors:Li, J, Qian, X, Hu, J, Sha, B.
Deposit date:2009-01-03
Release date:2009-07-28
Last modified:2023-09-06
Method:X-RAY DIFFRACTION (2.14 Å)
Cite:Molecular chaperone Hsp70/Hsp90 prepares the mitochondrial outer membrane translocon receptor Tom71 for preprotein loading.
J.Biol.Chem., 284, 2009
2FXT
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Crystal Structure of Yeast Tim44
Descriptor: Import inner membrane translocase subunit TIM44
Authors:Josyula, R, Sha, B.
Deposit date:2006-02-06
Release date:2007-02-06
Last modified:2024-02-14
Method:X-RAY DIFFRACTION (3.2 Å)
Cite:Crystal Structure of Yeast Mitochondrial Peripheral Membrane Protein Tim44p C-terminal Domain.
J.Mol.Biol., 359, 2006
2GW1
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Crystal Structure of the Yeast Tom70
Descriptor: Mitochondrial precursor proteins import receptor
Authors:Wu, Y, Sha, B.
Deposit date:2006-05-03
Release date:2006-06-27
Last modified:2018-02-14
Method:X-RAY DIFFRACTION (3 Å)
Cite:Crystal structure of yeast mitochondrial outer membrane translocon member Tom70p.
Nat.Struct.Mol.Biol., 13, 2006
2QLD
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human Hsp40 Hdj1
Descriptor: DnaJ homolog subfamily B member 1
Authors:Hu, J, Wu, Y, Li, J, Fu, Z, Sha, B.
Deposit date:2007-07-12
Release date:2008-07-15
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (2.7 Å)
Cite:The crystal structure of the putative peptide-binding fragment from the human Hsp40 protein Hdj1.
Bmc Struct.Biol., 8, 2008
1TOV
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Structural genomics of Caenorhabditis elegans: CAP-GLY domain of F53F4.3
Descriptor: Hypothetical protein F53F4.3 in chromosome V, SULFATE ION
Authors:Li, S, Finley, J, Liu, Z.J, Qiu, S.H, Luan, C.H, Carson, M, Tsao, J, Johnson, D, Lin, G, Zhao, J, Thomas, W, Nagy, L.A, Sha, B, Delucas, L.J, Richardson, D, Richardson, J, Wang, B.C, Luo, M, Southeast Collaboratory for Structural Genomics (SECSG)
Deposit date:2004-06-15
Release date:2004-07-27
Last modified:2024-02-14
Method:X-RAY DIFFRACTION (1.77 Å)
Cite:Crystal Structure of the Cytoskeleton-Associated Protein Glycine-Rich (CAP-Gly) Domain
J.Biol.Chem., 277, 2002
3H84
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Crystal structure of GET3
Descriptor: ATPase GET3, CHLORIDE ION, MAGNESIUM ION, ...
Authors:Hu, J, Li, J, Qian, X, Sha, B.
Deposit date:2009-04-28
Release date:2009-12-22
Last modified:2024-02-21
Method:X-RAY DIFFRACTION (2.3 Å)
Cite:The crystal structures of yeast Get3 suggest a mechanism for tail-anchored protein membrane insertion.
Plos One, 4, 2009
3IO3
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GEt3 with ADP from D. Hansenii in Closed form
Descriptor: ADENOSINE-5'-DIPHOSPHATE, DEHA2D07832p, GLYCEROL, ...
Authors:Hu, J, Li, J, Qian, X, Sha, B.
Deposit date:2009-08-13
Release date:2009-12-22
Last modified:2023-09-06
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:The crystal structures of yeast Get3 suggest a mechanism for tail-anchored protein membrane insertion
Plos One, 4, 2009
3IEG
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Crystal Structure of P58(IPK) TPR Domain at 2.5 A
Descriptor: DnaJ homolog subfamily C member 3
Authors:Tao, J, Sha, B.
Deposit date:2009-07-22
Release date:2010-03-31
Last modified:2019-07-24
Method:X-RAY DIFFRACTION (2.51 Å)
Cite:Crystal Structure of P58(IPK) TPR Fragment Reveals the Mechanism for its Molecular Chaperone Activity in UPR.
J.Mol.Biol., 64, 2010
1XAO
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Hsp40-Ydj1 dimerization domain
Descriptor: Mitochondrial protein import protein MAS5
Authors:Wu, Y, Sha, B.
Deposit date:2004-08-26
Release date:2005-05-03
Last modified:2024-02-14
Method:X-RAY DIFFRACTION (2.07 Å)
Cite:The crystal structure of the C-terminal fragment of yeast Hsp40 Ydj1 reveals novel dimerization motif for Hsp40
J.Mol.Biol., 346, 2005
3QK9
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Yeast Tim44 C-terminal domain complexed with Cymal-3
Descriptor: CHLORIDE ION, Mitochondrial import inner membrane translocase subunit TIM44
Authors:Cui, W, Josyula, R, Fu, Z, Sha, B.
Deposit date:2011-01-31
Release date:2011-03-09
Last modified:2024-02-21
Method:X-RAY DIFFRACTION (3.1 Å)
Cite:Membrane Binding Mechanism of Yeast Mitochondrial Peripheral Membrane Protein TIM44.
Protein Pept.Lett., 18, 2011
1MO0
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BU of 1mo0 by Molmil
Structural Genomics Of Caenorhabditis Elegans: Triose Phosphate Isomerase
Descriptor: ACETATE ION, SULFATE ION, Triosephosphate isomerase
Authors:Symersky, J, Li, S, Finley, J, Liu, Z.-J, Qui, H, Luan, C.H, Carson, M, Tsao, J, Johnson, D, Lin, G, Zhao, J, Thomas, W, Nagy, L.A, Sha, B, DeLucas, L.J, Wang, B.-C, Luo, M, Southeast Collaboratory for Structural Genomics (SECSG)
Deposit date:2002-09-06
Release date:2002-09-13
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (1.7 Å)
Cite:Structural genomics of Caenorhabditis elegans: triosephosphate isomerase
Proteins, 51, 2003
5SV7
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The Crystal structure of a chaperone
Descriptor: Eukaryotic translation initiation factor 2-alpha kinase 3
Authors:Wang, P, Li, J, Sha, B.
Deposit date:2016-08-04
Release date:2017-03-01
Last modified:2023-10-04
Method:X-RAY DIFFRACTION (3.209 Å)
Cite:The ER stress sensor PERK luminal domain functions as a molecular chaperone to interact with misfolded proteins.
Acta Crystallogr D Struct Biol, 72, 2016
5U2U
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Crystal structure of the Hsp104 N-terminal domain from Saccharomyces cerevisiae
Descriptor: Heat shock protein 104
Authors:Wang, P, Li, J, Sha, B.
Deposit date:2016-11-30
Release date:2017-04-19
Last modified:2024-03-06
Method:X-RAY DIFFRACTION (2.541 Å)
Cite:Crystal structures of Hsp104 N-terminal domains from Saccharomyces cerevisiae and Candida albicans suggest the mechanism for the function of Hsp104 in dissolving prions.
Acta Crystallogr D Struct Biol, 73, 2017
5U2L
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Crystal structure of the Hsp104 N-terminal domain from Candida albicans
Descriptor: Heat shock protein 104
Authors:Wang, P, Li, J, Sha, B.
Deposit date:2016-11-30
Release date:2017-04-19
Last modified:2024-03-06
Method:X-RAY DIFFRACTION (1.6555 Å)
Cite:Crystal structures of Hsp104 N-terminal domains from Saccharomyces cerevisiae and Candida albicans suggest the mechanism for the function of Hsp104 in dissolving prions.
Acta Crystallogr D Struct Biol, 73, 2017
5V1D
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Complex structure of the bovine PERK luminal domain and its substrate peptide
Descriptor: 12-mer peptide, eIF2AK3 protein
Authors:Wang, P, Li, J, Sha, B.
Deposit date:2017-03-02
Release date:2018-02-14
Last modified:2024-03-20
Method:X-RAY DIFFRACTION (2.799 Å)
Cite:The luminal domain of the ER stress sensor protein PERK binds misfolded proteins and thereby triggers PERK oligomerization
J. Biol. Chem., 293, 2018

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