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PDB: 27 results

1L4I
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Crystal Structure of the Periplasmic Chaperone SfaE
Descriptor: SfaE PROTEIN
Authors:Knight, S.D, Choudhury, D, Hultgren, S, Pinkner, J, Stojanoff, V, Thompson, A.
Deposit date:2002-03-05
Release date:2002-06-12
Last modified:2024-02-14
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:Structure of the S pilus periplasmic chaperone SfaE at 2.2 A resolution.
Acta Crystallogr.,Sect.D, 58, 2002
6R9D
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Crystal structure of an asymmetric dimer of the N-terminal domain of Euprosthenops australis Major Ampullate Spidroin 1 (dragline silk)
Descriptor: Major ampullate spidroin 1, SULFATE ION
Authors:Knight, S.D, Jiang, W, Askarieh, G.
Deposit date:2019-04-03
Release date:2019-07-17
Last modified:2024-01-24
Method:X-RAY DIFFRACTION (2.1 Å)
Cite:Structure of the N-terminal domain of Euprosthenops australis dragline silk suggests that conversion of spidroin dope to spider silk involves a conserved asymmetric dimer intermediate.
Acta Crystallogr D Struct Biol, 75, 2019
6Y4F
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X-ray structure of the Zn-dependent receptor-binding domain of Proteus mirabilis MR/P fimbrial adhesin MrpH
Descriptor: Fimbrial adhesin, GLUTAMIC ACID, ZINC ION
Authors:Knight, S.D, Ubhayasekera, W, Jiang, W.
Deposit date:2020-02-20
Release date:2020-08-19
Last modified:2024-10-23
Method:X-RAY DIFFRACTION (1.75 Å)
Cite:MrpH, a new class of metal-binding adhesin, requires zinc to mediate biofilm formation.
Plos Pathog., 16, 2020
6Y4E
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X-ray structure of the Zn-dependent receptor-binding domain of Proteus mirabilis MR/P fimbrial adhesin MrpH
Descriptor: Fimbrial adhesin, L(+)-TARTARIC ACID, ZINC ION
Authors:Knight, S.D, Ubhayasekera, W, Jiang, W.
Deposit date:2020-02-20
Release date:2020-08-19
Last modified:2024-10-23
Method:X-RAY DIFFRACTION (1.02 Å)
Cite:MrpH, a new class of metal-binding adhesin, requires zinc to mediate biofilm formation.
Plos Pathog., 16, 2020
2OS7
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Caf1M periplasmic chaperone tetramer
Descriptor: Chaperone protein caf1M
Authors:Knight, S.D, Zavialov, A.Z.
Deposit date:2007-02-05
Release date:2007-04-17
Last modified:2023-08-30
Method:X-RAY DIFFRACTION (2.9 Å)
Cite:A novel self-capping mechanism controls aggregation of periplasmic chaperone Caf1M
MOL.MICROBIOL., 64, 2007
2YAD
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BRICHOS domain of Surfactant protein C precursor protein
Descriptor: SURFACTANT PROTEIN C BRICHOS DOMAIN
Authors:Askarieh, G, Siponen, M.I, Willander, H, Landreh, M, Westermark, P, Nordling, K, Keranen, H, Hermansson, E, Hamvas, A, Nogee, L.M, Bergman, T, Saenz, A, Casals, C, Aqvist, J, Jornvall, H, Presto, J, Johansson, J, Arrowsmith, C.H, Bountra, C, Collins, R, Edwards, A.M, Ekblad, T, Flodin, S, Flores, A, Graslund, S, Hammarstrom, M, Johansson, I, Karlberg, T, Kol, S, Kotenyova, T, Kouznetsova, E, Moche, M, Nyman, T, Nordlund, P, Persson, C, Schuler, H, Thorsell, A.G, Tresaugues, L, van den Berg, S, Wahlberg, E, Weigelt, J, Welin, M, Berglund, H, Knight, S.D.
Deposit date:2011-02-18
Release date:2012-02-15
Last modified:2024-10-23
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:High Resolution Structure of a Bricos Domain and its Implications for Anti-Amyloid Chaperone Activity on Lung Surgactant Protein C.
Proc.Natl.Acad.Sci.USA, 109, 2012
2XET
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Conserved hydrophobic clusters on the surface of the Caf1A usher C-terminal domain are important for F1 antigen assembly
Descriptor: F1 CAPSULE-ANCHORING PROTEIN, SULFATE ION
Authors:Dubnovitsky, A.P, Duck, Z, Kersley, J.E, Hard, T, MacIntyre, S, Knight, S.D.
Deposit date:2010-05-17
Release date:2010-09-22
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (1.6 Å)
Cite:Conserved Hydrophobic Clusters on the Surface of the Caf1A Usher C-Terminal Domain are Important for F1 Antigen Assembly.
J.Mol.Biol., 403, 2010
1P5V
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X-ray structure of the Caf1M:Caf1 chaperone:subunit preassembly complex
Descriptor: Chaperone protein Caf1M, F1 capsule antigen
Authors:Zavialov, A.V, Berglund, J, Pudney, A.F, Fooks, L.J, Ibrahim, T.M, MacIntyre, S, Knight, S.D.
Deposit date:2003-04-28
Release date:2003-06-24
Last modified:2018-03-07
Method:X-RAY DIFFRACTION (1.7 Å)
Cite:Structure and Biogenesis of the Capsular F1 Antigen from Yersinia pestis. Preserved Folding Energy Drives Fiber Formation
Cell(Cambridge,Mass.), 113, 2003
1P5U
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X-ray structure of the ternary Caf1M:Caf1:Caf1 chaperone:subunit:subunit complex
Descriptor: Chaperone protein Caf1M, F1 capsule antigen
Authors:Zavialov, A.V, Berglund, J, Pudney, A.F, Fooks, L.J, Ibrahim, T.M, MacIntyre, S, Knight, S.D.
Deposit date:2003-04-28
Release date:2003-06-24
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (1.99 Å)
Cite:Structure and Biogenesis of the Capsular F1 Antigen from Yersinia pestis. Preserved Folding Energy Drives Fiber Formation
Cell(Cambridge,Mass.), 113, 2003
1Z9S
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Crystal Structure of the native chaperone:subunit:subunit Caf1M:Caf1:Caf1 complex
Descriptor: Chaperone protein Caf1M, F1 capsule antigen
Authors:Zavialov, A.V, Tischenko, V.M, Fooks, L.J, Brandsdal, B.O, Aqvist, J, Zav'yalov, V.P, Macintyre, S, Knight, S.D.
Deposit date:2005-04-04
Release date:2005-06-21
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:Resolving the energy paradox of chaperone/usher-mediated fibre assembly
Biochem.J., 389, 2005
1UWF
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1.7 A resolution structure of the receptor binding domain of the FimH adhesin from uropathogenic E. coli
Descriptor: FIMH PROTEIN, GLYCEROL, butyl alpha-D-mannopyranoside
Authors:Bouckaert, J, Berglund, J, Genst, E.D, Cools, L, Hung, C.-S, Wuhrer, M, Zavialov, A, Langermann, S, Hultgren, S, Wyns, L, Oscarson, S, Knight, S.D, De Greve, H.
Deposit date:2004-02-05
Release date:2005-02-16
Last modified:2024-10-16
Method:X-RAY DIFFRACTION (1.69 Å)
Cite:Receptor Binding Studies Disclose a Novel Class of High-Affinity Inhibitors of the Escherichia Coli Fimh Adhesin.
Mol.Microbiol., 55, 2005
1TR7
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FimH adhesin receptor binding domain from uropathogenic E. coli
Descriptor: (4S)-2-METHYL-2,4-PENTANEDIOL, CACODYLATE ION, FimH protein, ...
Authors:Bouckaert, J, Berglund, J, Schembri, M, De Genst, E, Cools, L, Wuhrer, M, Hung, C.S, Pinkner, J, Slattegard, R, Zavialov, A, Choudhury, D, Langermann, S, Hultgren, S.J, Wyns, L, Klemm, P, Oscarson, S, Knight, S.D, De Greve, H.
Deposit date:2004-06-21
Release date:2005-05-03
Last modified:2023-10-25
Method:X-RAY DIFFRACTION (2.1 Å)
Cite:Receptor binding studies disclose a novel class of high-affinity inhibitors of the Escherichia coli FimH adhesin
Mol.Microbiol., 55, 2005
6H1X
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Receptor-binding domain of Proteus mirabilis Uroepithelial Cell Adhesin UcaD21-211
Descriptor: COBALT (II) ION, Putative fimbrial adhesin
Authors:Wangshu, J, Knight, S.D.
Deposit date:2018-07-12
Release date:2018-11-07
Last modified:2024-05-15
Method:X-RAY DIFFRACTION (1.7 Å)
Cite:Structures of two fimbrial adhesins, AtfE and UcaD, from the uropathogen Proteus mirabilis.
Acta Crystallogr D Struct Biol, 74, 2018
6H2L
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Receptor-binding domain of Proteus mirabilis Uroepithelial Cell Adhesin UcaD21-217
Descriptor: Putative fimbrial adhesin, SULFATE ION
Authors:Wangshu, J, Knight, S.D.
Deposit date:2018-07-13
Release date:2018-11-07
Last modified:2024-01-17
Method:X-RAY DIFFRACTION (1.5 Å)
Cite:Structures of two fimbrial adhesins, AtfE and UcaD, from the uropathogen Proteus mirabilis.
Acta Crystallogr D Struct Biol, 74, 2018
6H1Q
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Proteus mirabilis Ambient Temperature Fimbriae adhesin AtfE
Descriptor: Fimbrial adhesin, GLYCEROL, PHOSPHATE ION
Authors:Wangshu, J, Knight, S.D.
Deposit date:2018-07-12
Release date:2018-11-07
Last modified:2024-10-16
Method:X-RAY DIFFRACTION (1.58 Å)
Cite:Structures of two fimbrial adhesins, AtfE and UcaD, from the uropathogen Proteus mirabilis.
Acta Crystallogr D Struct Biol, 74, 2018
3LR2
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Self-assembly of spider silk proteins is controlled by a pH-sensitive relay
Descriptor: 1,2-ETHANEDIOL, DI(HYDROXYETHYL)ETHER, Major ampullate spidroin 1
Authors:Askarieh, G, Hedhammar, H, Nordling, K, Johansson, J, Knight, S.D, Rising, A, Casals, C, Saenz, A.
Deposit date:2010-02-10
Release date:2010-05-12
Last modified:2024-02-21
Method:X-RAY DIFFRACTION (1.7 Å)
Cite:Self-assembly of spider silk proteins is controlled by a pH-sensitive relay.
Nature, 465, 2010
3LR6
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Self-assembly of spider silk proteins is controlled by a pH-sensitive relay
Descriptor: Major ampullate spidroin 1, TRIETHYLENE GLYCOL
Authors:Askarieh, G, Hedhammar, H, Nordling, K, Saenz, A, Casals, C, Rising, A, Johansson, J, Knight, S.D.
Deposit date:2010-02-10
Release date:2010-05-12
Last modified:2024-02-21
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:Self-assembly of spider silk proteins is controlled by a pH-sensitive relay.
Nature, 465, 2010
3LR8
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Self-assembly of spider silk proteins is controlled by a pH-sensitive relay
Descriptor: 1,2-ETHANEDIOL, DI(HYDROXYETHYL)ETHER, Major ampullate spidroin 1, ...
Authors:Askarieh, G, Hedhammar, H, Nordling, K, Rising, A, Johansson, J, Knight, S.D.
Deposit date:2010-02-10
Release date:2010-05-12
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (2.3 Å)
Cite:Self-assembly of spider silk proteins is controlled by a pH-sensitive relay.
Nature, 465, 2010
3LRD
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Self-assembly of spider silk proteins is controlled by a pH-sensitive relay
Descriptor: 1,2-ETHANEDIOL, Major ampullate spidroin 1, TRIETHYLENE GLYCOL
Authors:Askarieh, G, Hedhammar, H, Nordling, K, Rising, A, Johansson, J, Knight, S.D, Saenz, A, Casals, C.
Deposit date:2010-02-11
Release date:2010-05-12
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (2.15 Å)
Cite:Self-assembly of spider silk proteins is controlled by a pH-sensitive relay.
Nature, 465, 2010
3DOS
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BU of 3dos by Molmil
Crystal structure of the complex of the Caf1M chaperone with the mini-fiber of two Caf1 subunits (Caf1:Caf1), carrying the Thr7Phe and Ala9Val mutations in the Gd donor strand
Descriptor: Chaperone protein caf1M, F1 capsule antigen
Authors:Fooks, L.J, Yu, X, Moslehi-Mohebi, E, Tischenko, V, Knight, S.D, MacIntyre, S, Zavialov, A.V.
Deposit date:2008-07-06
Release date:2009-07-14
Last modified:2024-10-30
Method:X-RAY DIFFRACTION (2.4 Å)
Cite:Hydrophobicity and rigidity of binding segments enable CAF1M chaperone to act as assembly catalyst
TO BE PUBLISHED
3DPB
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Crystal structure of the complex of the Caf1M chaperone with the mini-fiber of two Caf1 subunits (Caf1:Caf1), carrying the Ala9Val, Ala11Val, and Leu13Val mutations in the Gd donor strand
Descriptor: Chaperone protein caf1M, F1 capsule antigen
Authors:Fooks, L.J, Yu, X, Moslehi-Mohebi, E, Tischenko, V, Knight, S.D, MacIntyre, S, Zavialov, A.V.
Deposit date:2008-07-07
Release date:2009-07-14
Last modified:2023-08-30
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:Hydrophobicity and rigidity of binding segments enable CAF1M chaperone to act as assembly catalyst
To be published
3DSN
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Crystal structure of the complex of the Caf1M chaperone with the mini-fiber of two Caf1 subunits (Caf1:Caf1), carrying the Thr7Phe mutation in the Gd donor strand
Descriptor: Chaperone protein caf1M, F1 capsule antigen
Authors:Fooks, L.J, Yu, X, Moslehi-Mohebi, E, Tischenko, V, Knight, S.D, MacIntyre, S, Zavialov, A.V.
Deposit date:2008-07-13
Release date:2009-07-14
Last modified:2023-08-30
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:Hydrophobicity and rigidity of binding segments enable CAF1M chaperone to act as assembly catalyst
To be Published
1QPP
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CRYSTAL STRUCTURES OF SELF CAPPING PAPD CHAPERONE HOMODIMERS
Descriptor: PAPD CHAPERONE
Authors:Hung, D.L, Pinkner, J.S, Knight, S.D, Hultgren, S.J.
Deposit date:1999-05-28
Release date:1999-07-07
Last modified:2018-03-14
Method:X-RAY DIFFRACTION (2.6 Å)
Cite:Structural basis of chaperone self-capping in P pilus biogenesis.
Proc.Natl.Acad.Sci.USA, 96, 1999
1QPX
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CRYSTAL STRUCTURES OF SELF-CAPPING PAPD CHAPERONE HOMODIMERS
Descriptor: PAPD CHAPERONE
Authors:Hung, D.L, Pinkner, J.S, Knight, S.D, Hultgren, S.J.
Deposit date:1999-05-31
Release date:1999-07-07
Last modified:2022-12-21
Method:X-RAY DIFFRACTION (2.4 Å)
Cite:Structural basis of chaperone self-capping in P pilus biogenesis.
Proc.Natl.Acad.Sci.USA, 96, 1999
4FBS
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Structure of monomeric NT from Euprosthenops australis Major Ampullate Spidroin 1 (MaSp1)
Descriptor: BROMIDE ION, Major ampullate spidroin 1
Authors:Askarieh, G, Hedhammar, M, Rising, A, Johansson, J, Knight, S.D.
Deposit date:2012-05-23
Release date:2012-08-01
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (1.7 Å)
Cite:pH-Dependent Dimerization of Spider Silk N-Terminal Domain Requires Relocation of a Wedged Tryptophan Side Chain
J.Mol.Biol., 2012

 

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