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PDB: 13 results

8EK4
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De novo designed ice-binding proteins from twist-constrained helices
Descriptor: Ice-binding protein TIP-99a
Authors:Bera, A.K, De Haas, R.J.
Deposit date:2022-09-19
Release date:2023-07-12
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (2.35 Å)
Cite:De novo designed ice-binding proteins from twist-constrained helices.
Proc.Natl.Acad.Sci.USA, 120, 2023
8T6E
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BU of 8t6e by Molmil
Crystal structure of T33-28.3: Deep-learning sequence design of co-assembling tetrahedron protein nanoparticles
Descriptor: T33-28.3: A, T33-28.3: B
Authors:Bera, A.K, de Haas, R.J, Kang, A, Sankaran, B, King, N.P.
Deposit date:2023-06-15
Release date:2024-04-24
Method:X-RAY DIFFRACTION (2.48 Å)
Cite:Rapid and automated design of two-component protein nanomaterials using ProteinMPNN.
Proc.Natl.Acad.Sci.USA, 121, 2024
8T6C
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BU of 8t6c by Molmil
Crystal structure of T33-18.2: Deep-learning sequence design of co-assembling tetrahedron protein nanoparticles
Descriptor: T33-18.2 : A, T33-18.2 : B
Authors:Bera, A.K, de Haas, R.J, Kang, A, Sankaran, B, King, N.P.
Deposit date:2023-06-15
Release date:2024-04-24
Method:X-RAY DIFFRACTION (1.92 Å)
Cite:Rapid and automated design of two-component protein nanomaterials using ProteinMPNN.
Proc.Natl.Acad.Sci.USA, 121, 2024
8T6N
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BU of 8t6n by Molmil
Crystal structure of T33-27.1: Deep-learning sequence design of co-assembling tetrahedron protein nanoparticles
Descriptor: T33-27.1 : A, T33-27.1 : B
Authors:Bera, A.K, de Haas, R.J, Kang, A, Sankaran, B, King, N.P.
Deposit date:2023-06-16
Release date:2024-04-24
Method:X-RAY DIFFRACTION (3.63 Å)
Cite:Rapid and automated design of two-component protein nanomaterials using ProteinMPNN.
Proc.Natl.Acad.Sci.USA, 121, 2024
2ID7
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BU of 2id7 by Molmil
1.75 A Structure of T87I Phosphono-CheY
Descriptor: Chemotaxis protein cheY
Authors:Halkides, C.J, Haas, R.M, McAdams, K.A, Casper, E.S, Santarsiero, B.D, Mesecar, A.D.
Deposit date:2006-09-14
Release date:2007-09-25
Last modified:2023-08-30
Method:X-RAY DIFFRACTION (1.75 Å)
Cite:The structures of T87I phosphono-CheY and T87I/Y106W phosphono-CheY help to explain their binding affinities to the FliM and CheZ peptides.
Arch.Biochem.Biophys., 479, 2008
2IDM
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2.00 A Structure of T87I/Y106W Phosphono-CheY
Descriptor: ACETATE ION, Chemotaxis protein cheY
Authors:Halkides, C.J, Haas, R.M, McAdams, K.A, Casper, E.S, Santarsiero, B.D, Mesecar, A.D.
Deposit date:2006-09-15
Release date:2007-09-25
Last modified:2023-08-30
Method:X-RAY DIFFRACTION (2 Å)
Cite:The structures of T87I phosphono-CheY and T87I/Y106W phosphono-CheY help to explain their binding affinities to the FliM and CheZ peptides.
Arch.Biochem.Biophys., 479, 2008
2ID9
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BU of 2id9 by Molmil
1.85 A Structure of T87I/Y106W Phosphono-CheY
Descriptor: Chemotaxis protein cheY
Authors:Halkides, C.J, Haas, R.M, McAdams, K.A, Casper, E.S, Santarsiero, B.D, Mesecar, A.D.
Deposit date:2006-09-14
Release date:2007-09-25
Last modified:2023-08-30
Method:X-RAY DIFFRACTION (1.75 Å)
Cite:The structures of T87I phosphono-CheY and T87I/Y106W phosphono-CheY help to explain their binding affinities to the FliM and CheZ peptides.
Arch.Biochem.Biophys., 479, 2008
1NLY
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Crystal structure of the traffic ATPase of the Helicobacter pylori type IV secretion system in complex with ATPgammaS
Descriptor: MAGNESIUM ION, NONAETHYLENE GLYCOL, PHOSPHOTHIOPHOSPHORIC ACID-ADENYLATE ESTER, ...
Authors:Savvides, S.N, Yeo, H.J, Beck, M.R, Blaesing, F, Lurz, R, Lanka, E, Buhrdorf, R, Fischer, W, Haas, R, Waksman, G.
Deposit date:2003-01-08
Release date:2003-05-06
Last modified:2012-03-07
Method:X-RAY DIFFRACTION (2.8 Å)
Cite:VirB11 ATPases are dynamic hexameric assemblies: New insights into bacterial type IV secretion
Embo J., 22, 2003
1NLZ
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Crystal structure of unliganded traffic ATPase of the type IV secretion system of helicobacter pylori
Descriptor: virB11 homolog
Authors:Savvides, S.N, Yeo, H.J, Beck, M.R, Blaesing, F, Lurz, R, Lanka, E, Buhrdorf, R, Fischer, W, Haas, R, Waksman, G.
Deposit date:2003-01-08
Release date:2003-05-06
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (3 Å)
Cite:VirB11 ATPases are dynamic hexameric assemblies: New insights into bacterial type IV secretion
Embo J., 22, 2003
1OPX
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BU of 1opx by Molmil
Crystal structure of the traffic ATPase (HP0525) of the Helicobacter pylori type IV secretion system bound by sulfate
Descriptor: NONAETHYLENE GLYCOL, SULFATE ION, virB11 homolog
Authors:Savvides, S.N, Yeo, H.J, Beck, M.R, Blaesing, F, Lurz, R, Lanka, E, Buhrdorf, R, Fischer, W, Haas, R, Waksman, G.
Deposit date:2003-03-06
Release date:2003-05-06
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (2.8 Å)
Cite:VirB11 ATPases are dynamic hexameric assemblies: New insights into bacterial type IV secretion
Embo J., 22, 2003
2PT7
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BU of 2pt7 by Molmil
Crystal structure of Cag VirB11 (HP0525) and an inhibitory protein (HP1451)
Descriptor: Cag-alfa, Hypothetical protein
Authors:Hare, S, Fischer, W, Williams, R, Terradot, L, Bayliss, R, Haas, R, Waksman, G.
Deposit date:2007-05-08
Release date:2007-11-13
Last modified:2023-08-30
Method:X-RAY DIFFRACTION (2.4 Å)
Cite:Identification, structure and mode of action of a new regulator of the Helicobacter pylori HP0525 ATPase.
Embo J., 26, 2007
1QWL
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BU of 1qwl by Molmil
Structure of Helicobacter pylori catalase
Descriptor: AZIDE ION, KatA catalase, OXYGEN MOLECULE, ...
Authors:Loewen, P.C, Carpena, X, Perez-Luque, R, Rovira, C, Haas, R, Obenbreit, S, Nicholls, P, Fita, I.
Deposit date:2003-09-02
Release date:2004-03-30
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (1.6 Å)
Cite:Structure of Helicobacter pylori Catalase, with and without Formic Acid Bound, at 1.6 A Resolution
Biochemistry, 43, 2004
1QWM
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BU of 1qwm by Molmil
Structure of Helicobacter pylori catalase with formic acid bound
Descriptor: AZIDE ION, FORMIC ACID, KatA catalase, ...
Authors:Loewen, P.C, Carpena, X, Perez-Luque, R, Rovira, C, Haas, R, Odenbreit, S, Nicholls, P, Fita, I.
Deposit date:2003-09-02
Release date:2004-03-30
Last modified:2023-08-16
Method:X-RAY DIFFRACTION (1.6 Å)
Cite:Structure of Helicobacter pylori Catalase, with and without Formic Acid Bound, at 1.6 A Resolution
Biochemistry, 43, 2004

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