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PDB: 409 results

1CKF
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T52A MUTANT HUMAN LYSOZYME
Descriptor: PROTEIN (LYSOZYME), SODIUM ION
Authors:Takano, K, Yamagata, Y, Funahashi, J, Yutani, K.
Deposit date:1999-04-22
Release date:1999-04-30
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Contribution of intra- and intermolecular hydrogen bonds to the conformational stability of human lysozyme(,).
Biochemistry, 38, 1999
1CJ6
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T11A MUTANT HUMAN LYSOZYME
Descriptor: PROTEIN (LYSOZYME), SODIUM ION
Authors:Takano, K, Yamagata, Y, Funahashi, J, Yutani, K.
Deposit date:1999-04-22
Release date:1999-04-30
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Contribution of intra- and intermolecular hydrogen bonds to the conformational stability of human lysozyme(,).
Biochemistry, 38, 1999
1CJ8
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T40A MUTANT HUMAN LYSOZYME
Descriptor: PROTEIN (LYSOZYME), SODIUM ION
Authors:Takano, K, Yamagata, Y, Funahashi, J, Yutani, K.
Deposit date:1999-04-22
Release date:1999-04-30
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Contribution of intra- and intermolecular hydrogen bonds to the conformational stability of human lysozyme(,).
Biochemistry, 38, 1999
1CJ7
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T11V MUTANT HUMAN LYSOZYME
Descriptor: PROTEIN (LYSOZYME), SODIUM ION
Authors:Takano, K, Yamagata, Y, Funahashi, J, Yutani, K.
Deposit date:1999-04-22
Release date:1999-04-30
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Contribution of intra- and intermolecular hydrogen bonds to the conformational stability of human lysozyme(,).
Biochemistry, 38, 1999
1CJ9
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T40V MUTANT HUMAN LYSOZYME
Descriptor: PROTEIN (LYSOZYME), SODIUM ION
Authors:Takano, K, Yamagata, Y, Funahashi, J, Yutani, K.
Deposit date:1999-04-22
Release date:1999-04-30
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Contribution of intra- and intermolecular hydrogen bonds to the conformational stability of human lysozyme(,).
Biochemistry, 38, 1999
1WDW
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Structural basis of mutual activation of the tryptophan synthase a2b2 complex from a hyperthermophile, Pyrococcus furiosus
Descriptor: PYRIDOXAL-5'-PHOSPHATE, Tryptophan synthase alpha chain, Tryptophan synthase beta chain 1
Authors:Lee, S.J, Ogasahara, K, Ma, J, Nishio, K, Ishida, M, Yamagata, Y, Tsukihara, T, Yutani, K, RIKEN Structural Genomics/Proteomics Initiative (RSGI)
Deposit date:2004-05-19
Release date:2005-07-12
Last modified:2023-10-25
Method:X-RAY DIFFRACTION (3 Å)
Cite:Conformational Changes in the Tryptophan Synthase from a Hyperthermophile upon alpha(2)beta(2) Complex Formation: Crystal Structure of the Complex
Biochemistry, 44, 2005
1WQ5
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Crystal structure of tryptophan synthase alpha-subunit from Escherichia coli
Descriptor: GLYCEROL, SULFATE ION, Tryptophan synthase alpha chain
Authors:Nishio, K, Morimoto, Y, Ishizuka, M, Ogasahara, K, Yutani, K, Tsukihara, T, RIKEN Structural Genomics/Proteomics Initiative (RSGI)
Deposit date:2004-09-22
Release date:2005-02-15
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (2.3 Å)
Cite:Conformational Changes in the alpha-Subunit Coupled to Binding of the beta(2)-Subunit of Tryptophan Synthase from Escherichia coli: Crystal Structure of the Tryptophan Synthase alpha-Subunit Alon
Biochemistry, 44, 2005
5ZEA
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Crystal structure of the nucleotide-free mutant A3B3
Descriptor: GLYCEROL, V-type sodium ATPase catalytic subunit A, V-type sodium ATPase subunit B
Authors:Maruyama, S, Suzuki, K, Mizutani, K, Saito, Y, Imai, F.L, Ishizuka-Katsura, Y, Shirouzu, M, Ichiro, Y, Murata, T.
Deposit date:2018-02-27
Release date:2019-02-06
Last modified:2023-11-22
Method:X-RAY DIFFRACTION (3.384 Å)
Cite:Metastable asymmetrical structure of a shaftless V1motor.
Sci Adv, 5, 2019
5ZE9
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Crystal structure of AMP-PNP bound mutant A3B3 complex from Enterococcus hirae V-ATPase
Descriptor: 2-(N-MORPHOLINO)-ETHANESULFONIC ACID, GLYCEROL, MAGNESIUM ION, ...
Authors:Maruyama, S, Suzuki, K, Sasaki, H, Mizutani, K, Saito, Y, Imai, F.L, Ishizuka-Katsura, Y, Shirouzu, M, Ichiro, Y, Murata, T.
Deposit date:2018-02-27
Release date:2019-02-06
Last modified:2023-11-22
Method:X-RAY DIFFRACTION (2.102 Å)
Cite:Metastable asymmetrical structure of a shaftless V1motor.
Sci Adv, 5, 2019
1V7Y
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Crystal structure of tryptophan synthase alpha-subunit from Escherichia coli at room temperature
Descriptor: SULFATE ION, Tryptophan synthase alpha chain
Authors:Nishio, K, Morimoto, Y, Ishizuka, M, Ogasahara, K, Yutani, K, Tsukihara, T, RIKEN Structural Genomics/Proteomics Initiative (RSGI)
Deposit date:2003-12-25
Release date:2005-02-15
Last modified:2023-12-27
Method:X-RAY DIFFRACTION (2.5 Å)
Cite:Conformational Changes in the alpha-Subunit Coupled to Binding of the beta(2)-Subunit of Tryptophan Synthase from Escherichia coli: Crystal Structure of the Tryptophan Synthase alpha-Subunit Alon
Biochemistry, 44, 2005
1X12
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Structure of Mutant Pyrrolidone Carboxyl Peptidase (E192D) from a Hyperthermophile, Pyrococcus furiosus
Descriptor: Pyrrolidone-carboxylate peptidase
Authors:Kaushik, J.K, Yamagata, Y, Ogasahara, K, Yutani, K.
Deposit date:2005-03-31
Release date:2006-06-13
Last modified:2023-10-25
Method:X-RAY DIFFRACTION (2 Å)
Cite:Completely buried, non-ion-paired glutamic acid contributes favorably to the conformational stability of pyrrolidone carboxyl peptidases from hyperthermophiles.
Biochemistry, 45, 2006
1X10
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Structure of Mutant Pyrrolidone Carboxyl Peptidase (E192A) from a Hyperthermophile, Pyrococcus furiosus
Descriptor: Pyrrolidone-carboxylate peptidase
Authors:Kaushik, J.K, Yamagata, Y, Ogasahara, K, Yutani, K.
Deposit date:2005-03-31
Release date:2006-06-13
Last modified:2023-10-25
Method:X-RAY DIFFRACTION (2 Å)
Cite:Completely buried, non-ion-paired glutamic acid contributes favorably to the conformational stability of pyrrolidone carboxyl peptidases from hyperthermophiles.
Biochemistry, 45, 2006
7CBD
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Catalytic domain of Cellulomonas fimi Cel6B
Descriptor: Exoglucanase A
Authors:Nakamura, A, Ishiwata, D, Visootsat, A, Uchiyama, T, Mizutani, K, Kaneko, S, Murata, T, Igarashi, K, Iino, R.
Deposit date:2020-06-12
Release date:2020-08-26
Last modified:2023-11-29
Method:X-RAY DIFFRACTION (1.3 Å)
Cite:Domain architecture divergence leads to functional divergence in binding and catalytic domains of bacterial and fungal cellobiohydrolases.
J.Biol.Chem., 295, 2020
1IOI
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x-ray crystalline structures of pyrrolidone carboxyl peptidase from a hyperthermophile, pyrococcus furiosus, and its cys-free mutant
Descriptor: PYRROLIDONE CARBOXYL PEPTIDASE
Authors:Tanaka, H, Chinami, M, Ota, M, Tsukihara, T, Yutani, K.
Deposit date:2001-03-09
Release date:2001-03-21
Last modified:2023-10-25
Method:X-RAY DIFFRACTION (2.7 Å)
Cite:X-ray crystalline structures of pyrrolidone carboxyl peptidase from a hyperthermophile, Pyrococcus furiosus, and its cys-free mutant.
J.Biochem., 130, 2001
1IOF
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X-RAY CRYSTALLINE STRUCTURES OF PYRROLIDONE CARBOXYL PEPTIDASE FROM A HYPERTHERMOPHILE, PYROCOCCUS FURIOSUS, AND ITS CYS-FREE MUTANT
Descriptor: PYRROLIDONE CARBOXYL PEPTIDASE
Authors:Tanaka, H, Chinami, M, Ota, M, Tsukihara, T, Yutani, K.
Deposit date:2001-03-09
Release date:2001-03-21
Last modified:2023-10-25
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:X-ray crystalline structures of pyrrolidone carboxyl peptidase from a hyperthermophile, Pyrococcus furiosus, and its cys-free mutant.
J.Biochem., 130, 2001
2OHC
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structural and mutational analysis of tRNA-intron splicing endonuclease from Thermoplasma acidophilum DSM1728
Descriptor: tRNA-splicing endonuclease
Authors:Kim, Y.K, Mizutani, K, Rhee, K.H, Lee, W.H, Park, S.Y, Hwang, K.Y.
Deposit date:2007-01-10
Release date:2007-11-27
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (2.5 Å)
Cite:Structural and Mutational Analysis of tRNA Intron-Splicing Endonuclease from Thermoplasma acidophilum DSM 1728: Catalytic Mechanism of tRNA Intron-Splicing Endonucleases
J.Bacteriol., 189, 2007
2HED
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CONTRIBUTION OF WATER MOLECULES IN THE INTERIOR OF A PROTEIN TO THE CONFORMATIONAL STABILITY
Descriptor: LYSOZYME, SODIUM ION
Authors:Takano, K, Funahashi, J, Yamagata, Y, Fujii, S, Yutani, K.
Deposit date:1997-09-16
Release date:1998-01-14
Last modified:2021-11-03
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Contribution of water molecules in the interior of a protein to the conformational stability.
J.Mol.Biol., 274, 1997
2HEC
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CONTRIBUTION OF WATER MOLECULES IN THE INTERIOR OF A PROTEIN TO THE CONFORMATIONAL STABILITY
Descriptor: LYSOZYME, SODIUM ION
Authors:Takano, K, Funahashi, J, Yamagata, Y, Fujii, S, Yutani, K.
Deposit date:1997-09-16
Release date:1998-01-14
Last modified:2021-11-03
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Contribution of water molecules in the interior of a protein to the conformational stability.
J.Mol.Biol., 274, 1997
2HEE
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BU of 2hee by Molmil
CONTRIBUTION OF WATER MOLECULES IN THE INTERIOR OF A PROTEIN TO THE CONFORMATIONAL STABILITY
Descriptor: LYSOZYME, SODIUM ION
Authors:Takano, K, Funahashi, J, Yamagata, Y, Fujii, S, Yutani, K.
Deposit date:1997-09-16
Release date:1998-01-14
Last modified:2021-11-03
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Contribution of water molecules in the interior of a protein to the conformational stability.
J.Mol.Biol., 274, 1997
2HEB
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CONTRIBUTION OF WATER MOLECULES IN THE INTERIOR OF A PROTEIN TO THE CONFORMATIONAL STABILITY
Descriptor: LYSOZYME, SODIUM ION
Authors:Takano, K, Funahashi, J, Yamagata, Y, Fujii, S, Yutani, K.
Deposit date:1997-09-16
Release date:1998-01-28
Last modified:2021-11-03
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:Contribution of water molecules in the interior of a protein to the conformational stability.
J.Mol.Biol., 274, 1997
2HEA
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CONTRIBUTION OF WATER MOLECULES IN THE INTERIOR OF A PROTEIN TO THE CONFORMATIONAL STABILITY
Descriptor: LYSOZYME, SODIUM ION
Authors:Takano, K, Funahashi, J, Yamagata, Y, Fujii, S, Yutani, K.
Deposit date:1997-09-16
Release date:1998-01-14
Last modified:2021-11-03
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Contribution of water molecules in the interior of a protein to the conformational stability.
J.Mol.Biol., 274, 1997
2HEF
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CONTRIBUTION OF WATER MOLECULES IN THE INTERIOR OF A PROTEIN TO THE CONFORMATIONAL STABILITY
Descriptor: LYSOZYME, SODIUM ION
Authors:Takano, K, Funahashi, J, Yamagata, Y, Fujii, S, Yutani, K.
Deposit date:1997-09-16
Release date:1998-01-14
Last modified:2021-11-03
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Contribution of water molecules in the interior of a protein to the conformational stability.
J.Mol.Biol., 274, 1997
3AA8
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Crystal Structure Analysis of the Mutant CutA1 (S11V/E61V) from E. coli
Descriptor: Divalent-cation tolerance protein cutA
Authors:Matsuura, Y, Tanaka, T, Bagautdinov, B, Kunishima, N, Yutani, K.
Deposit date:2009-11-12
Release date:2010-08-11
Last modified:2023-11-01
Method:X-RAY DIFFRACTION (2.3 Å)
Cite:Remarkable improvement in the heat stability of CutA1 from Escherichia coli by rational protein design
J.Biochem., 148, 2010
1MH6
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Solution Structure of the Transposon Tn5-encoding Bleomycin-binding Protein, BLMT
Descriptor: BLEOMYCIN RESISTANCE PROTEIN
Authors:Kumagai, T, Ohtani, K, Tsuboi, Y, Koike, T, Sugiyama, M.
Deposit date:2002-08-19
Release date:2003-02-19
Last modified:2024-05-29
Method:SOLUTION NMR
Cite:Solution structure of the transposon Tn5-encoding bleomycin-binding protein complexed with an activated bleomycin analogue.
To be published
2Z9W
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Crystal structure of pyridoxamine-pyruvate aminotransferase complexed with pyridoxal
Descriptor: 3-HYDROXY-5-(HYDROXYMETHYL)-2-METHYLISONICOTINALDEHYDE, Aspartate aminotransferase, GLYCEROL, ...
Authors:Yoshikane, Y, Yokochi, N, Yamasaki, M, Mizutani, K, Ohnishi, K, Mikami, B, Hayashi, H, Yagi, T.
Deposit date:2007-09-26
Release date:2007-11-06
Last modified:2023-11-01
Method:X-RAY DIFFRACTION (1.7 Å)
Cite:Crystal structure of pyridoxamine-pyruvate aminotransferase from Mesorhizobium loti MAFF303099
J.Biol.Chem., 283, 2008

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