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7Z6B
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BU of 7z6b by Molmil
PET hydrolase PET6 from halophilic organsim Vibrio gazogenes
Descriptor: (4S)-2-METHYL-2,4-PENTANEDIOL, CHLORIDE ION, Cutinase, ...
Authors:Weigert, S, Hoecker, B.
Deposit date:2022-03-11
Release date:2022-11-23
Last modified:2024-01-31
Method:X-RAY DIFFRACTION (1.4 Å)
Cite:Investigation of the halophilic PET hydrolase PET6 from Vibrio gazogenes.
Protein Sci., 31, 2022
7PZJ
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BU of 7pzj by Molmil
Structure of a bacteroidetal polyethylene terephthalate (PET) esterase
Descriptor: Lipase, POTASSIUM ION
Authors:Zang, H, Dierkes, R, Perez-Garcia, P, Weigert, S, Sternagel, S, Hallam, S.J, Applegate, V, Schumacher, J, Schott, T, Pleiss, J, Almeida, A, Hoecker, B, Smits, S.H, Schmitz, R.A, Chow, J, Streit, W.R.
Deposit date:2021-10-12
Release date:2022-03-02
Last modified:2024-05-01
Method:X-RAY DIFFRACTION (2.1 Å)
Cite:The Bacteroidetes Aequorivita sp. and Kaistella jeonii Produce Promiscuous Esterases With PET-Hydrolyzing Activity.
Front Microbiol, 12, 2021
6T1G
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BU of 6t1g by Molmil
Streptavidin variants harbouring an artificial organocatalyst based cofactor
Descriptor: 1,2-ETHANEDIOL, 5-[(3~{a}~{S},4~{S},6~{a}~{R})-2-oxidanylidene-1,3,3~{a},4,6,6~{a}-hexahydrothieno[3,4-d]imidazol-4-yl]-~{N}-(1-pyridin-4-ylpiperidin-4-yl)pentanamide, Streptavidin
Authors:Lechner, H, Hocker, B.
Deposit date:2019-10-04
Release date:2020-10-14
Last modified:2024-05-01
Method:X-RAY DIFFRACTION (1.9 Å)
Cite:An Artificial Cofactor Catalyzing the Baylis-Hillman Reaction with Designed Streptavidin as Protein Host*.
Chembiochem, 22, 2021
2XH7
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BU of 2xh7 by Molmil
Engineering the enolase active site pocket: Crystal structure of the D321A mutant of yeast enolase 1
Descriptor: 2-PHOSPHOGLYCERIC ACID, ENOLASE 1, MAGNESIUM ION
Authors:Schreier, B, Hocker, B.
Deposit date:2010-06-09
Release date:2010-08-25
Last modified:2023-12-20
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Engineering the Enolase Magnesium II Binding Site -Implications for its Evolution.
Biochemistry, 49, 2010
2XH4
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BU of 2xh4 by Molmil
Engineering the enolase active site pocket: Crystal structure of the S39A D321A mutant of yeast enolase 1
Descriptor: 2-PHOSPHOGLYCERIC ACID, ENOLASE 1, MAGNESIUM ION
Authors:Schreier, B, Hocker, B.
Deposit date:2010-06-09
Release date:2010-08-25
Last modified:2023-12-20
Method:X-RAY DIFFRACTION (1.7 Å)
Cite:Engineering the Enolase Magnesium II Binding Site -Implications for its Evolution.
Biochemistry, 49, 2010
2XH0
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BU of 2xh0 by Molmil
Engineering the enolase active site pocket: Crystal structure of the S39N Q167K D321R mutant of yeast enolase 1
Descriptor: ENOLASE 1, MAGNESIUM ION, PHOSPHOENOLPYRUVATE
Authors:Schreier, B, Hocker, B.
Deposit date:2010-06-08
Release date:2010-08-25
Last modified:2023-12-20
Method:X-RAY DIFFRACTION (1.7 Å)
Cite:Engineering the Enolase Magnesium II Binding Site -Implications for its Evolution.
Biochemistry, 49, 2010
2XH2
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BU of 2xh2 by Molmil
Engineering the enolase active site pocket: Crystal structure of the S39N D321A mutant of yeast enolase 1
Descriptor: 2-PHOSPHOGLYCERIC ACID, ENOLASE 1, MAGNESIUM ION
Authors:Schreier, B, Hocker, B.
Deposit date:2010-06-08
Release date:2010-08-25
Last modified:2023-12-20
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Engineering the Enolase Magnesium II Binding Site -Implications for its Evolution.
Biochemistry, 49, 2010
2XGZ
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BU of 2xgz by Molmil
Engineering the enolase active site pocket: Crystal structure of the S39N D321R mutant of yeast enolase 1
Descriptor: ENOLASE 1, MAGNESIUM ION, PHOSPHOENOLPYRUVATE
Authors:Schreier, B, Hocker, B.
Deposit date:2010-06-08
Release date:2010-08-25
Last modified:2023-12-20
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Engineering the Enolase Magnesium II Binding Site -Implications for its Evolution.
Biochemistry, 49, 2010

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