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PDB: 46 results

1GKK
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Feruloyl esterase domain of XynY from clostridium thermocellum
Descriptor: CADMIUM ION, ENDO-1,4-BETA-XYLANASE Y, GLYCEROL
Authors:Prates, J.A.M, Tarbouriech, N, Charnock, S.J, Fontes, C.M.G.A, Ferreira, L.M.A, Davies, G.J.
Deposit date:2001-08-15
Release date:2001-12-13
Last modified:2011-09-07
Method:X-RAY DIFFRACTION (1.6 Å)
Cite:The Structure of the Feruloyl Esterase Module of Xylanase 10B from Clostridium Thermocellum Provides Insights Into Substrate Recognition
Structure, 9, 2001
2CN2
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Crystal Structures of Clostridium thermocellum Xyloglucanase
Descriptor: BETA-1,4-XYLOGLUCAN HYDROLASE, CADMIUM ION
Authors:Martinez-Fleites, C, Taylor, E.J, Guerreiro, C.I, Prates, J.A.M, Ferreira, L.M.A, Fontes, C.M.G.A, Baumann, M.J, Brumer, H, Davies, G.J.
Deposit date:2006-05-17
Release date:2006-05-22
Last modified:2023-12-13
Method:X-RAY DIFFRACTION (2.1 Å)
Cite:Crystal Structures of Clostridium Thermocellum Xyloglucanase, Xgh74A, Reveal the Structural Basis for Xyloglucan Recognition and Degradation.
J.Biol.Chem., 281, 2006
1UR2
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Xylanase Xyn10B mutant (E262S) from Cellvibrio mixtus in complex with arabinofuranose alpha 1,3 linked to xylotriose
Descriptor: CHLORIDE ION, ENDOXYLANASE, MAGNESIUM ION, ...
Authors:Pell, G, Taylor, E.J, Gloster, T.M, Turkenburg, J.P, Fontes, C.M.G.A, Ferreira, L.M.A, Davies, G.J, Gilbert, H.J.
Deposit date:2003-10-24
Release date:2003-12-18
Last modified:2023-12-13
Method:X-RAY DIFFRACTION (1.6 Å)
Cite:The Mechanisms by which Family 10 Glycoside Hydrolases Bind Decorated Substrates
J.Biol.Chem., 279, 2004
1UR1
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Xylanase Xyn10B mutant (E262S) from Cellvibrio mixtus in complex with arabinofuranose alpha-1,3 linked to xylobiose
Descriptor: CHLORIDE ION, ENDOXYLANASE, MAGNESIUM ION, ...
Authors:Pell, G, Taylor, E.J, Gloster, T.M, Turkenburg, J.P, Fontes, C.M.G.A, Ferreira, L.M.A, Davies, G.J, Gilbert, H.J.
Deposit date:2003-10-24
Release date:2003-12-18
Last modified:2023-12-13
Method:X-RAY DIFFRACTION (1.43 Å)
Cite:The Mechanisms by which Family 10 Glycoside Hydrolases Bind Decorated Substrates
J.Biol.Chem., 279, 2004
4BA6
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High Resolution structure of the C-terminal family 65 Carbohydrate Binding Module (CBM65B) of endoglucanase Cel5A from Eubacterium cellulosolvens
Descriptor: Endoglucanase cel5A, GLYCEROL
Authors:Venditto, I, Luis, A.S, Basle, A, Temple, M, Ferreira, L.M.A, Fontes, C.M.G.A, Gilbert, H.J, Najmudin, S.
Deposit date:2012-09-11
Release date:2012-12-19
Last modified:2023-12-20
Method:X-RAY DIFFRACTION (1.42 Å)
Cite:Understanding how noncatalytic carbohydrate binding modules can display specificity for xyloglucan.
J. Biol. Chem., 288, 2013
1V0A
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Family 11 Carbohydrate-Binding Module of cellulosomal cellulase Lic26A-Cel5E of Clostridium thermocellum
Descriptor: CALCIUM ION, ENDOGLUCANASE H, SULFATE ION
Authors:Carvalho, A.L, Romao, M.J, Goyal, A, Prates, J.A.M, Pires, V.M.R, Ferreira, L.M.A, Bolam, D.N, Gilbert, H.J, Fontes, C.M.G.A.
Deposit date:2004-03-25
Release date:2005-01-12
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (1.98 Å)
Cite:The Family 11 Carbohydrate-Binding Module of Clostridium Thermocellum Lic26A-Cel5E Accomodates Beta-1,4- and Beta-1,3-1,4-Mixed Linked Glucans at a Single Binding Site
J.Biol.Chem., 279, 2004
2CC0
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Family 4 carbohydrate esterase from Streptomyces lividans in complex with acetate
Descriptor: ACETATE ION, ACETYL-XYLAN ESTERASE, ZINC ION
Authors:Taylor, E.J, Gloster, T.M, Turkenburg, J.P, Vincent, F, Brzozowski, A.M, Dupont, C, Shareck, F, Centeno, M.S.J, Prates, J.A.M, Puchart, V, Ferreira, L.M.A, Fontes, C.M.G.A, Biely, P, Davies, G.J.
Deposit date:2006-01-10
Release date:2006-01-23
Last modified:2023-12-13
Method:X-RAY DIFFRACTION (1.6 Å)
Cite:Structure and Activity of Two Metal-Ion Dependent Acetyl Xylan Esterases Involved in Plant Cell Wall Degradation Reveals a Close Similarity to Peptidoglycan Deacetylases
J.Biol.Chem., 281, 2006
2CN3
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Crystal Structures of Clostridium thermocellum Xyloglucanase
Descriptor: BETA-1,4-XYLOGLUCAN HYDROLASE, CALCIUM ION, alpha-D-xylopyranose-(1-6)-beta-D-glucopyranose-(1-4)-[alpha-D-xylopyranose-(1-6)]beta-D-glucopyranose-(1-4)-[beta-D-galactopyranose-(1-2)-alpha-D-xylopyranose-(1-6)]beta-D-glucopyranose-(1-4)-alpha-D-glucopyranose, ...
Authors:Martinez-Fleites, C, Taylor, E.J, Guerreiro, C.I.P.D, Prates, J.A.M, Ferreira, L.M.A, Fontes, C.M.G.A, Baumann, M.J, Brumer, H, Davies, G.J.
Deposit date:2006-05-17
Release date:2006-05-22
Last modified:2023-12-13
Method:X-RAY DIFFRACTION (1.95 Å)
Cite:Crystal Structures of Clostridium Thermocellum Xyloglucanase, Xgh74A, Reveal the Structural Basis for Xyloglucan Recognition and Degradation
J.Biol.Chem., 281, 2006
2C71
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The structure of a family 4 acetyl xylan esterase from Clostridium thermocellum in complex with a magnesium ion.
Descriptor: GLYCOSIDE HYDROLASE, FAMILY 11:CLOSTRIDIUM CELLULOSOME ENZYME, DOCKERIN TYPE I:POLYSACCHARIDE, ...
Authors:Taylor, E.J, Turkenburg, P.J, Vincent, F, Brzozowski, A.M, Gloster, T.M, Dupont, C, Shareck, F, Centeno, M.S.J, Prates, J.A.M, Ferreira, L.M.A, Fontes, C.M.G.A, Biely, P, Davies, G.J.
Deposit date:2005-11-17
Release date:2006-01-23
Last modified:2024-05-08
Method:X-RAY DIFFRACTION (1.05 Å)
Cite:Structure and Activity of Two Metal-Ion Dependent Acetyl Xylan Esterases Involved in Plant Cell-Wall Degradation Reveals a Close Similarity to Peptidoglycan Deacetylases.
J.Biol.Chem., 281, 2006
2C79
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The structure of a family 4 acetyl xylan esterase from Clostridium thermocellum in complex with a colbalt ion.
Descriptor: COBALT (II) ION, GLYCOSIDE HYDROLASE, FAMILY 11:CLOSTRIDIUM CELLULOSOME ENZYME, ...
Authors:Taylor, E.J, Turkenburg, P.J, Vincent, F, Brzozowski, A.M, Gloster, T.M, Dupont, C, Shareck, F, Centeno, M.S.J, Prates, J.A.M, Ferreira, L.M.A, Fontes, C.M.G.A, Biely, P, Davies, G.J.
Deposit date:2005-11-18
Release date:2006-01-23
Last modified:2023-12-13
Method:X-RAY DIFFRACTION (1.5 Å)
Cite:Structure and Activity of Two Metal-Ion Dependent Acetyl Xylan Esterases Involved in Plant Cell Wall Degradation Reveals a Close Similarity to Peptidoglycan Deacetylases.
J.Biol.Chem., 281, 2006
4D3L
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SeMet structure of a novel carbohydrate binding module from glycoside hydrolase family 9 (Cel9A) from Ruminococcus flavefaciens FD-1 in the orthorhombic form
Descriptor: (3S)-3-HYDROXYHEPTANEDIOIC ACID, 1,2-ETHANEDIOL, CALCIUM ION, ...
Authors:Venditto, I, Goyal, A, Thompson, A, Ferreira, L.M.A, Fontes, C.M.G.A, Najmudin, S.
Deposit date:2014-10-22
Release date:2016-01-20
Last modified:2016-07-13
Method:X-RAY DIFFRACTION (2 Å)
Cite:Complexity of the Ruminococcus Flavefaciens Cellulosome Reflects an Expansion in Glycan Recognition.
Proc.Natl.Acad.Sci.USA, 113, 2016
8QKS
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Plasmodium falciparum reticulocyte-binding protein homologue 5 (PfRH5) bound to R5.034
Descriptor: Immunoglobulin lambda variable 1-36, R5034HV, Reticulocyte-binding protein-like protein 5
Authors:Wright, N.D, Barrett, J.R, Bradshaw, W.J, Paterson, N.G, MacLean, E.M, Ferreira, L, McHugh, K, Von Delft, F, Koekemoer, L, Draper, S.J.
Deposit date:2023-09-16
Release date:2024-07-31
Last modified:2024-09-18
Method:X-RAY DIFFRACTION (3.994 Å)
Cite:Analysis of the diverse antigenic landscape of the malaria protein RH5 identifies a potent vaccine-induced human public antibody clonotype.
Cell, 187, 2024
8QKR
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Plasmodium falciparum reticulocyte-binding protein homologue 5 (PfRH5) bound to R5.251
Descriptor: R5251VHCH, R5251VLCL, Reticulocyte-binding protein-like protein 5
Authors:Wright, N.D, Barrett, J.R, Bradshaw, W.J, Paterson, N.G, MacLean, E.M, Ferreira, L, McHugh, K, Koekemoer, L, Draper, S.J.
Deposit date:2023-09-16
Release date:2024-07-31
Last modified:2024-09-18
Method:X-RAY DIFFRACTION (3.234 Å)
Cite:Analysis of the diverse antigenic landscape of the malaria protein RH5 identifies a potent vaccine-induced human public antibody clonotype.
Cell, 187, 2024
5G56
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THE TETRA-MODULAR CELLULOSOMAL ARABINOXYLANASE CtXyl5A STRUCTURE AS REVEALED BY X-RAY CRYSTALLOGRAPHY
Descriptor: (4S)-2-METHYL-2,4-PENTANEDIOL, CALCIUM ION, CARBOHYDRATE BINDING FAMILY 6
Authors:Bras, J.L.A, Gilbert, H.J, Ferreira, L.M.A, Fontes, C.M.G.A, Najmudin, S.
Deposit date:2016-05-21
Release date:2016-06-29
Last modified:2024-01-10
Method:X-RAY DIFFRACTION (2.64 Å)
Cite:The Mechanism by which Arabinoxylanases Can Recognise Highly Decorated Xylans.
J.Biol.Chem., 291, 2016
1UQZ
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Xylanase Xyn10B mutant (E262S) from Cellvibrio mixtus in complex with 4-O-methyl glucuronic acid
Descriptor: 4-O-methyl-alpha-D-glucopyranuronic acid-(1-2)-beta-D-xylopyranose-(1-4)-beta-D-xylopyranose-(1-4)-beta-D-xylopyranose, CHLORIDE ION, ENDOXYLANASE, ...
Authors:Pell, G, Taylor, E.J, Gloster, T.M, Turkenburg, J.P, Fontes, C.M.G.A, Ferreira, L.M.A, Davies, G.J, Gilbert, H.J.
Deposit date:2003-10-24
Release date:2003-12-18
Last modified:2023-12-13
Method:X-RAY DIFFRACTION (1.55 Å)
Cite:The Mechanisms by which Family 10 Glycoside Hydrolases Bind Decorated Substrates
J.Biol.Chem., 279, 2004
1UQY
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Xylanase Xyn10B mutant (E262S) from Cellvibrio mixtus in complex with xylopentaose
Descriptor: ENDOXYLANASE, MAGNESIUM ION, beta-D-xylopyranose-(1-4)-beta-D-xylopyranose-(1-4)-alpha-D-xylopyranose, ...
Authors:Pell, G, Taylor, E.J, Gloster, T.M, Turkenburg, J.P, Fontes, C.M.G.A, Ferreira, L.M.A, Davies, G.J, Gilbert, H.J.
Deposit date:2003-10-23
Release date:2003-12-18
Last modified:2023-12-13
Method:X-RAY DIFFRACTION (1.72 Å)
Cite:The Mechanisms by which Family 10 Glycoside Hydrolases Bind Decorated Substrates
J.Biol.Chem., 279, 2004
1UUQ
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Exo-mannosidase from Cellvibrio mixtus
Descriptor: GLYCEROL, MANNOSYL-OLIGOSACCHARIDE GLUCOSIDASE, SULFATE ION
Authors:Dias, M.V.F, Vincent, F, Pell, G, Prates, J.A.M, Centeno, M.S.J, Ferreira, L.M.A, Gilbert, H.J, Davies, G.J, Fontes, C.M.G.A.
Deposit date:2004-01-09
Release date:2004-04-16
Last modified:2024-05-08
Method:X-RAY DIFFRACTION (1.5 Å)
Cite:Insights Into the Molecular Determinants of Substrate Specificity in Glycoside Hydrolase Family 5 Revealed by the Crystal Structure and Kinetics of Cellvibrio Mixtus Mannosidase 5A
J.Biol.Chem., 279, 2004
4AFD
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Structural and biochemical characterization of a novel Carbohydrate Binding Module of endoglucanase Cel5A from Eubacterium cellulosolvens with a partially bound cellotetraose moeity.
Descriptor: ENDOGLUCANASE CEL5A, beta-D-glucopyranose-(1-4)-beta-D-glucopyranose-(1-4)-beta-D-glucopyranose-(1-4)-beta-D-glucopyranose
Authors:Luis, A.S, Venditto, I, Prates, J.A.M, Ferreira, L.M.A, Gilbert, H.J, Fontes, C.M.G.A, Najmudin, S.
Deposit date:2012-01-18
Release date:2012-12-26
Last modified:2023-12-20
Method:X-RAY DIFFRACTION (1.34 Å)
Cite:Understanding How Noncatalytic Carbohydrate Binding Modules Can Display Specificity for Xyloglucan.
J.Biol.Chem., 288, 2013
4AEM
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Structural and biochemical characterization of a novel Carbohydrate Binding Module of endoglucanase Cel5A from Eubacterium cellulosolvens
Descriptor: ENDOGLUCANASE CEL5A
Authors:Luis, A.S, Venditto, I, Prates, J.A.M, Ferreira, L.M.A, Gilbert, H.J, Fontes, C.M.G.A, Najmudin, S.
Deposit date:2012-01-11
Release date:2013-01-23
Last modified:2023-12-20
Method:X-RAY DIFFRACTION (2.1 Å)
Cite:Understanding How Non-Catalytic Carbohydrate Binding Modules Can Display Specificity for Xyloglucan
J.Biol.Chem., 288, 2013
4AEK
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Structural and biochemical characterization of a novel Carbohydrate Binding Module of endoglucanase Cel5A from Eubacterium cellulosolvens
Descriptor: ENDOGLUCANASE CEL5A
Authors:Luis, A.S, Venditto, I, Prates, J.A.M, Ferreira, L.M.A, Gilbert, H.J, Fontes, C.M.G.A, Najmudin, S.
Deposit date:2012-01-11
Release date:2013-01-16
Last modified:2019-05-08
Method:X-RAY DIFFRACTION (1.75 Å)
Cite:Understanding How Non-Catalytic Carbohydrate Binding Modules Can Display Specificity for Xyloglucan.
J.Biol.Chem., 288, 2013
4AFM
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Structural and biochemical characterization of a novel Carbohydrate Binding Module of endoglucanase Cel5A from Eubacterium cellulosolvens.
Descriptor: ACETATE ION, ENDOGLUCANASE CEL5A, GLYCEROL
Authors:Luis, A.S, Venditto, I, Prates, J.A.M, Ferreira, L.M.A, Gilbert, H.J, Fontes, C.M.G.A, Najmudin, S.
Deposit date:2012-01-19
Release date:2012-12-19
Last modified:2023-12-20
Method:X-RAY DIFFRACTION (1.25 Å)
Cite:Understanding How Non-Catalytic Carbohydrate Binding Modules Can Display Specificity for Xyloglucan.
J.Biol.Chem., 288, 2013
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