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PDB: 56 results

7Z6Q
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Cryo-EM structure of the whole photosynthetic complex from the green sulfur bacteria
Descriptor: 1,2-DIPALMITOYL-PHOSPHATIDYL-GLYCEROLE, BACTERIOCHLOROPHYLL A, Bacteriochlorophyll A isomer, ...
Authors:Xie, H, Tsiotis, G.
Deposit date:2022-03-14
Release date:2023-02-08
Method:ELECTRON MICROSCOPY (2.5 Å)
Cite:Cryo-EM structure of the whole photosynthetic reaction center apparatus from the green sulfur bacterium Chlorobaculum tepidum.
Proc.Natl.Acad.Sci.USA, 120, 2023
2CNC
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BU of 2cnc by Molmil
Family 10 xylanase
Descriptor: CHLORIDE ION, ENDOXYLANASE, MAGNESIUM ION, ...
Authors:Xie, H, Flint, J, Vardakou, M, Lakey, J.H, Lewis, R.J, Gilbert, H.J, Dumon, C.
Deposit date:2006-05-19
Release date:2006-06-14
Last modified:2023-12-13
Method:X-RAY DIFFRACTION (2.4 Å)
Cite:Probing the Structural Basis for the Difference in Thermostability Displayed by Family 10 Xylanases.
J.Mol.Biol., 360, 2006
1H6Y
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The role of conserved amino acids in the cleft of the C-terminal family 22 carbohydrate binding module of Clostridium thermocellum Xyn10B in ligand binding
Descriptor: CALCIUM ION, ENDO-1,4-BETA-XYLANASE Y
Authors:Xie, H, Bolam, D.N, Charnock, S.J, Davies, G.J, Williamson, M.P, Simpson, P.J, Fontes, C.M.G.A, Ferreira, L.M.A, Gilbert, H.J.
Deposit date:2001-06-29
Release date:2002-06-27
Last modified:2023-12-13
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:Clostridium Thermocellum Xyn10B Carbohydrate-Binding Module 22-2: The Role of Conserved Amino Acids in Ligand Binding
Biochemistry, 40, 2001
1H6X
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The role of conserved amino acids in the cleft of the C-terminal family 22 carbohydrate binding module of Clostridium thermocellum Xyn10B in ligand binding
Descriptor: CALCIUM ION, ENDO-1,4-BETA-XYLANASE Y
Authors:Xie, H, Bolam, D.N, Charnock, S.J, Davies, G.J, Williamson, M.P, Simpson, P.J, Fontes, C.M.G.A, Ferreira, L.M.A, Gilbert, H.J.
Deposit date:2001-06-29
Release date:2002-06-27
Last modified:2023-12-13
Method:X-RAY DIFFRACTION (2.25 Å)
Cite:Clostridium Thermocellum Xyn10B Carbohydrate-Binding Module 22-2: The Role of Conserved Amino Acids in Ligand Binding
Biochemistry, 40, 2001
8WDX
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BU of 8wdx by Molmil
Crystal structure of human FABP4 complexed with C3
Descriptor: 1,2-ETHANEDIOL, 2-[(3-chloranyl-2-phenyl-phenyl)amino]-6-methyl-benzoic acid, Fatty acid-binding protein, ...
Authors:Xie, H, Chen, G.F, Xu, Y.C.
Deposit date:2023-09-16
Release date:2023-12-27
Method:X-RAY DIFFRACTION (1.65 Å)
Cite:Structure-based design of potent FABP4 inhibitors with high selectivity against FABP3.
Eur.J.Med.Chem., 264, 2023
8WE3
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Crystal structure of human FABP4 complexed with C7
Descriptor: 2-[(3-chloranyl-2-phenyl-phenyl)amino]-5-fluoranyl-benzoic acid, Fatty acid-binding protein, adipocyte
Authors:Xie, H, Chen, G.F, Xu, Y.C, Li, M.J.
Deposit date:2023-09-16
Release date:2023-12-27
Method:X-RAY DIFFRACTION (1.82 Å)
Cite:Structure-based design of potent FABP4 inhibitors with high selectivity against FABP3.
Eur.J.Med.Chem., 264, 2023
8H1D
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BU of 8h1d by Molmil
Solid-state NMR Structure of Aquaporin Z in its Native Cellular Membranes
Descriptor: Aquaporin Z
Authors:Xie, H, Zhao, Y, Zhao, W, Chen, Y, Liu, M, Yang, J.
Deposit date:2022-10-02
Release date:2022-11-09
Last modified:2024-05-15
Method:SOLID-STATE NMR
Cite:Solid-state NMR structure determination of a membrane protein in E. coli cellular inner membrane.
Sci Adv, 9, 2023
7DNC
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BU of 7dnc by Molmil
Crystal structure of EV71 3C proteinase in complex with a novel inhibitor
Descriptor: 3C protease, ~{N}-[(2~{S})-3-cyclohexyl-1-oxidanylidene-1-[[(2~{S})-1-oxidanylidene-3-[(3~{S})-2-oxidanylidenepyrrolidin-3-yl]propan-2-yl]amino]propan-2-yl]-1~{H}-indole-2-carboxamide
Authors:Xie, H, Su, H.X, Li, M.J, Xu, Y.C.
Deposit date:2020-12-09
Release date:2021-05-05
Last modified:2023-11-29
Method:X-RAY DIFFRACTION (1.17 Å)
Cite:Design, Synthesis, and Biological Evaluation of Peptidomimetic Aldehydes as Broad-Spectrum Inhibitors against Enterovirus and SARS-CoV-2.
J.Med.Chem., 65, 2022
7YF3
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Crystal structure of METTL9 in complex with unmethylated S100A9 peptide and SAH
Descriptor: Protein-L-histidine N-pros-methyltransferase, S-ADENOSYL-L-HOMOCYSTEINE, S100A9 peptide
Authors:Xie, H, Wang, X, Xu, C.
Deposit date:2022-07-07
Release date:2023-04-12
Last modified:2024-05-08
Method:X-RAY DIFFRACTION (3.434 Å)
Cite:Molecular basis for METTL9-mediated N1-histidine methylation.
Cell Discov, 9, 2023
7YF4
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Crystal structure of METTL9 in complex with SLC39A5 mutant peptide and SAH
Descriptor: Protein-L-histidine N-pros-methyltransferase, S-ADENOSYL-L-HOMOCYSTEINE, SLC39A5 mutant peptide
Authors:Xie, H, Wang, X, Xu, C.
Deposit date:2022-07-07
Release date:2023-04-12
Last modified:2024-05-08
Method:X-RAY DIFFRACTION (2.75 Å)
Cite:Molecular basis for METTL9-mediated N1-histidine methylation.
Cell Discov, 9, 2023
7Y9C
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Crystal structure of METTL9 in complex with SLC39A5 peptide and SAH
Descriptor: Protein-L-histidine N-pros-methyltransferase, S-ADENOSYL-L-HOMOCYSTEINE, SLC39A5
Authors:Xie, H, Wang, X, Xu, C.
Deposit date:2022-06-24
Release date:2023-04-12
Last modified:2024-05-08
Method:X-RAY DIFFRACTION (2.1 Å)
Cite:Molecular basis for METTL9-mediated N1-histidine methylation.
Cell Discov, 9, 2023
7YF2
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BU of 7yf2 by Molmil
Crystal structure of METTL9 in complex with unmethylated SLC39A5 peptide and SAH
Descriptor: Protein-L-histidine N-pros-methyltransferase, S-ADENOSYL-L-HOMOCYSTEINE, SLC39A5 peptide
Authors:Xie, H, Wang, X, Xu, C.
Deposit date:2022-07-07
Release date:2023-04-12
Last modified:2024-05-08
Method:X-RAY DIFFRACTION (1.691 Å)
Cite:Molecular basis for METTL9-mediated N1-histidine methylation.
Cell Discov, 9, 2023
7OT9
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BU of 7ot9 by Molmil
Structure of the AI-2 exporter family protein YdiK from E. coli
Descriptor: AI-2E member YdiK
Authors:Khera, R, Xie, H, Michel, H.
Deposit date:2021-06-09
Release date:2022-05-11
Last modified:2024-07-17
Method:ELECTRON MICROSCOPY (2.8 Å)
Cite:Cryo-EM structures of pentameric autoinducer-2 exporter from Escherichia coli reveal its transport mechanism.
Embo J., 41, 2022
6FV6
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BU of 6fv6 by Molmil
Monomer structure of the MATE family multidrug resistance transporter Aq_128 from Aquifex aeolicus in the outward-facing state
Descriptor: Aq128
Authors:Zhao, J, Safarian, S, Thielmann, Y, Xie, H, Wang, J, Michel, H.
Deposit date:2018-03-01
Release date:2019-03-20
Last modified:2024-01-17
Method:X-RAY DIFFRACTION (3.8 Å)
Cite:Monomer structure of Aq128 in the outward-facing state
To Be Published
6FV8
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BU of 6fv8 by Molmil
Dimer structure of the MATE family multidrug resistance transporter Aq_128 from Aquifex aeolicus in the outward-facing state
Descriptor: Aq128
Authors:Zhao, J, Safarian, S, Thielmann, Y, Xie, H, Wang, J, Michel, H.
Deposit date:2018-03-01
Release date:2019-03-20
Last modified:2024-01-17
Method:X-RAY DIFFRACTION (3 Å)
Cite:Dimer structure of the MATE family multidrug resistance transporter Aq128 in the outward-facing state
To Be Published
6FV7
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BU of 6fv7 by Molmil
Dimer structure of the MATE family multidrug resistance transporter Aq_128 from Aquifex aeolicus in the outward-facing state
Descriptor: Aq128
Authors:Zhao, J, Safarian, S, Thielmann, Y, Xie, H, Wang, J, Michel, H.
Deposit date:2018-03-01
Release date:2019-03-20
Last modified:2024-01-17
Method:X-RAY DIFFRACTION (3.7 Å)
Cite:Dimer structure of Aq128 in the outward-facing state
To Be Published
6Z71
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BU of 6z71 by Molmil
Structure of the MATE family multidrug resistance transporter Aq_128 from Aquifex aeolicus in the outward-facing state
Descriptor: Aq128
Authors:Zhao, J, Safarian, S, Thielmann, Y, Xie, H, Wang, J, Michel, H.
Deposit date:2020-05-29
Release date:2021-12-01
Last modified:2024-01-24
Method:X-RAY DIFFRACTION (3.5 Å)
Cite:The structure of the Aquifex aeolicus MATE family multidrug resistance transporter and sequence comparisons suggest the existence of a new subfamily.
Proc.Natl.Acad.Sci.USA, 118, 2021
6Z70
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BU of 6z70 by Molmil
Structure of the MATE family multidrug resistance transporter Aq_128 from Aquifex aeolicus in the outward-facing state
Descriptor: (2R)-2,3-dihydroxypropyl (9Z)-octadec-9-enoate, Aq128
Authors:Zhao, J, Safarian, S, Thielmann, Y, Xie, H, Wang, J, Michel, H.
Deposit date:2020-05-29
Release date:2021-12-01
Last modified:2024-01-24
Method:X-RAY DIFFRACTION (2 Å)
Cite:The structure of the Aquifex aeolicus MATE family multidrug resistance transporter and sequence comparisons suggest the existence of a new subfamily.
Proc.Natl.Acad.Sci.USA, 118, 2021
5DJQ
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BU of 5djq by Molmil
The structure of CBB3 cytochrome oxidase.
Descriptor: CALCIUM ION, COPPER (II) ION, Cbb3-type cytochrome c oxidase subunit CcoN1, ...
Authors:Buschmann, S, Warkentin, E, Xie, H, Kohlstaedt, M, Langer, J.D, Ermler, U, Michel, H.
Deposit date:2015-09-02
Release date:2016-01-13
Last modified:2016-07-27
Method:X-RAY DIFFRACTION (3.2 Å)
Cite:The structure of cbb3 cytochrome oxidase provides insights into proton pumping.
Science, 329, 2010
7TPR
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BU of 7tpr by Molmil
Camel nanobodies 7A3 and 8A2 broadly neutralize SARS-CoV-2 variants
Descriptor: Nanobody 7A3, Nanobody 8A2, Spike glycoprotein
Authors:Butay, K.J, Zhu, J, Dandey, V.P, Hong, J, Kwon, H.J, Chen, C.Z, Duan, Z, Li, D, Ren, H, Liang, T, Martin, N, Esposito, D, Ortega-Rodriguez, U, Xu, M, Xie, H, Ho, M, Cachau, R, Borgnia, M.J.
Deposit date:2022-01-25
Release date:2022-04-20
Method:ELECTRON MICROSCOPY (2.39 Å)
Cite:Camel nanobodies broadly neutralize SARS-CoV-2 variants
bioRxiv, 2021
6N5V
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BU of 6n5v by Molmil
Crystal Structure of Strictosidine in complex with 1H-indole-4-ethanamine
Descriptor: 2-(1H-indol-4-yl)ethan-1-amine, Strictosidine synthase
Authors:Cai, Y, Shao, N, Xie, H, Futamura, Y, Panjikar, S, Liu, H, Zhu, H, Osada, H, Zou, H.
Deposit date:2018-11-22
Release date:2019-11-27
Last modified:2024-10-23
Method:X-RAY DIFFRACTION (2.549 Å)
Cite:Crystal Structure of Strictosidine in complex with 1H-indole-4-ethanamine
to be published
7NB6
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BU of 7nb6 by Molmil
Structure of the autoinducer-2 exporter TqsA from E. coli
Descriptor: AI-2 transport protein TqsA
Authors:Khera, R, Xie, H, Michel, H.
Deposit date:2021-01-25
Release date:2022-05-11
Last modified:2024-07-10
Method:ELECTRON MICROSCOPY (3.3 Å)
Cite:Cryo-EM structures of pentameric autoinducer-2 exporter from Escherichia coli reveal its transport mechanism.
Embo J., 41, 2022
2XFE
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BU of 2xfe by Molmil
vCBM60 in complex with galactobiose
Descriptor: CALCIUM ION, CARBOHYDRATE BINDING MODULE, beta-D-galactopyranose-(1-4)-beta-D-galactopyranose
Authors:Montanier, C, Flint, J.E, Bolam, D.N, Xie, H, Liu, Z, Rogowski, A, Weiner, D.P, Nurizzo, D, Roberts, S.M, Turkenburg, J.P, Davies, G.J, Gilbert, H.J.
Deposit date:2010-05-21
Release date:2010-06-16
Last modified:2024-10-16
Method:X-RAY DIFFRACTION (1.82 Å)
Cite:Circular Permutation Provides an Evolutionary Link between Two Families of Calcium-Dependent Carbohydrate Binding Modules.
J.Biol.Chem., 285, 2010
2XHJ
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Circular permutation provides an evolutionary link between two families of calcium-dependent carbohydrate binding modules. SeMet form of vCBM60.
Descriptor: CALCIUM ION, CALCIUM-DEPENDENT CARBOHYDRATE BINDING MODULE
Authors:Montanier, C, Flint, J.E, Bolam, D.N, Xie, H, Liu, Z, Rogowski, A, Weiner, D, Ratnaparkhe, S, Nurizzo, D, Roberts, S.M, Turkenburg, J.P, Davies, G.J, Gilbert, H.J.
Deposit date:2010-06-16
Release date:2010-07-21
Last modified:2019-05-08
Method:X-RAY DIFFRACTION (1.73 Å)
Cite:Circular Permutation Provides an Evolutionary Link between Two Families of Calcium-Dependent Carbohydrate Binding Modules
J.Biol.Chem., 285, 2010
8GJM
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17b10 fab in complex with full-length SARS-CoV-2 Spike G614 trimer
Descriptor: 2-acetamido-2-deoxy-beta-D-glucopyranose, 2-acetamido-2-deoxy-beta-D-glucopyranose-(1-4)-2-acetamido-2-deoxy-beta-D-glucopyranose, 2-acetamido-2-deoxy-beta-D-glucopyranose-(1-4)-[alpha-L-fucopyranose-(1-6)]2-acetamido-2-deoxy-beta-D-glucopyranose, ...
Authors:Kwon, H.J, Zhang, J, Kosikova, M, Tang, W.C, Rodriguez, U.O, Peng, H.Q, Meseda, C.A, Pedro, C.L, Schmeisser, F, Lu, J.M, Zhou, B, Davis, C.T, Wentworth, D.E, Chen, W.H, Shriver, M.C, Pasetti, M.F, Weir, J.P, Chen, B, Xie, H.
Deposit date:2023-03-16
Release date:2023-04-05
Last modified:2024-10-16
Method:ELECTRON MICROSCOPY (2.8 Å)
Cite:Distinct in vitro and in vivo neutralization profiles of monoclonal antibodies elicited by the receptor binding domain of the ancestral SARS-CoV-2.
J Med Virol, 95, 2023

 

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