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6U4V
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BU of 6u4v by Molmil
Non-crosslinked wild type cysteine dioxygenase
Descriptor: Cysteine dioxygenase type 1, FE (III) ION
Authors:Meneely, K.M, Chilton, A.S, Forbes, D.L, Ellis, H.R, Lamb, A.L.
Deposit date:2019-08-26
Release date:2020-07-08
Last modified:2023-10-11
Method:X-RAY DIFFRACTION (2.3 Å)
Cite:The 3-His Metal Coordination Site Promotes the Coupling of Oxygen Activation to Cysteine Oxidation in Cysteine Dioxygenase.
Biochemistry, 59, 2020
6U4S
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BU of 6u4s by Molmil
wild type cysteine dioxygenase
Descriptor: Cysteine dioxygenase type 1, FE (III) ION
Authors:Meneely, K.M, Chilton, A.S, Forbes, D.L, Ellis, H.R, Lamb, A.L.
Deposit date:2019-08-26
Release date:2020-07-08
Last modified:2023-10-11
Method:X-RAY DIFFRACTION (2.49 Å)
Cite:The 3-His Metal Coordination Site Promotes the Coupling of Oxygen Activation to Cysteine Oxidation in Cysteine Dioxygenase.
Biochemistry, 59, 2020
6U4L
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BU of 6u4l by Molmil
cysteine dioxygenase variant - C93E
Descriptor: ACETATE ION, Cysteine dioxygenase type 1, FE (III) ION
Authors:Meneely, K.M, Chilton, A.S, Forbes, D.L, Ellis, H.R, Lamb, A.L.
Deposit date:2019-08-26
Release date:2020-07-08
Last modified:2023-10-11
Method:X-RAY DIFFRACTION (1.911 Å)
Cite:The 3-His Metal Coordination Site Promotes the Coupling of Oxygen Activation to Cysteine Oxidation in Cysteine Dioxygenase.
Biochemistry, 59, 2020
4PTZ
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BU of 4ptz by Molmil
Crystal structure of the Escherichia coli alkanesulfonate FMN reductase SsuE in FMN-bound form
Descriptor: FLAVIN MONONUCLEOTIDE, FMN reductase SsuE, GLYCEROL, ...
Authors:Driggers, C.M, Ellis, H.R, Karplus, P.A.
Deposit date:2014-03-11
Release date:2014-06-18
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (1.9007 Å)
Cite:Crystal Structure of Escherichia coli SsuE: Defining a General Catalytic Cycle for FMN Reductases of the Flavodoxin-like Superfamily.
Biochemistry, 53, 2014
4PTY
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BU of 4pty by Molmil
Crystal structure of the Escherichia coli alkanesulfonate FMN reductase SsuE in apo form
Descriptor: FMN reductase SsuE, GLYCEROL, PHOSPHATE ION
Authors:Driggers, C.M, Ellis, H.R, Karplus, P.A.
Deposit date:2014-03-11
Release date:2014-06-18
Last modified:2023-09-20
Method:X-RAY DIFFRACTION (2.1 Å)
Cite:Crystal Structure of Escherichia coli SsuE: Defining a General Catalytic Cycle for FMN Reductases of the Flavodoxin-like Superfamily.
Biochemistry, 53, 2014
4PU0
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BU of 4pu0 by Molmil
Crystal structure of the Escherichia coli alkanesulfonate FMN reductase SsuE in FMNH2-bound form
Descriptor: FLAVIN MONONUCLEOTIDE, FMN reductase SsuE, GLYCEROL, ...
Authors:Driggers, C.M, Ellis, H.R, Karplus, P.A.
Deposit date:2014-03-11
Release date:2014-06-18
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (2.3018 Å)
Cite:Crystal Structure of Escherichia coli SsuE: Defining a General Catalytic Cycle for FMN Reductases of the Flavodoxin-like Superfamily.
Biochemistry, 53, 2014
6DQO
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BU of 6dqo by Molmil
Crystal structure of SsuE FMN reductase Y118A mutant in FMN bound form.
Descriptor: FLAVIN MONONUCLEOTIDE, FMN reductase (NADPH), GLYCEROL
Authors:McFarlane, J.S, Ellis, H.R, Lamb, A.L.
Deposit date:2018-06-11
Release date:2019-01-09
Last modified:2024-03-06
Method:X-RAY DIFFRACTION (1.705 Å)
Cite:Not as easy as pi : An insertional residue does not explain the pi-helix gain-of-function in two-component FMN reductases.
Protein Sci., 28, 2019
6DQP
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BU of 6dqp by Molmil
Crystal structure of SsuE FMN reductase Delta118 mutant in apo form
Descriptor: FMN reductase (NADPH), GLYCEROL
Authors:McFarlane, J.S, Ellis, H.R, Lamb, A.L.
Deposit date:2018-06-11
Release date:2019-01-09
Last modified:2023-10-11
Method:X-RAY DIFFRACTION (1.546 Å)
Cite:Not as easy as pi : An insertional residue does not explain the pi-helix gain-of-function in two-component FMN reductases.
Protein Sci., 28, 2019
6DQI
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BU of 6dqi by Molmil
Crystal structure of SsuE FMN reductase Y118A mutant in apo form.
Descriptor: FMN reductase (NADPH), SULFATE ION
Authors:McFarlane, J.S, Ellis, H.R, Lamb, A.L.
Deposit date:2018-06-11
Release date:2019-01-09
Last modified:2023-10-11
Method:X-RAY DIFFRACTION (1.95 Å)
Cite:Not as easy as pi : An insertional residue does not explain the pi-helix gain-of-function in two-component FMN reductases.
Protein Sci., 28, 2019

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PDB entries from 2024-11-20

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