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6QFU
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HUMAN CARBONIC ANHYDRASE II WITH BOUND IRCP* COMPLEX (COFACTOR 7) TO GENERATE AN ARTIFICIAL TRANSFER HYDROGENASE (ATHASE)
Descriptor:Carbonic anhydrase 2, 4-[2-(9-chloranyl-2',3',4',5',6'-pentamethyl-4-oxidanyl-7-oxidanylidene-spiro[1$l^{4},8-diaza-9$l^{8}-iridabicyclo[4.3.0]nona-1(6),2,4-triene-9,1'-1$l^{8}-iridapentacyclo[2.2.0.0^{1,3}.0^{1,5}.0^{2,6}]hexane]-8-yl)ethyl]benzenesulfonamide, ZINC ION, ...
Authors:Rebelein, J.G.
Deposit date:2019-01-10
Release date:2019-04-17
Last modified:2019-05-22
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:Chemical Optimization of Whole-Cell Transfer Hydrogenation Using Carbonic Anhydrase as Host Protein.
Acs Catalysis, 9, 2019
6QFV
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HUMAN CARBONIC ANHYDRASE II WITH BOUND IRCP* COMPLEX (COFACTOR 8) TO GENERATE AN ARTIFICIAL TRANSFER HYDROGENASE (ATHASE)
Descriptor:Carbonic anhydrase 2, 4-[2-(9-chloranyl-2',3',4',5',6'-pentamethyl-7-oxidanylidene-spiro[1$l^{4},8-diaza-9$l^{8}-iridabicyclo[4.3.0]nona-1(6),2,4-triene-9,1'-1$l^{8}-iridapentacyclo[2.2.0.0^{1,3}.0^{1,5}.0^{2,6}]hexane]-8-yl)ethyl]benzenesulfonamide, ZINC ION, ...
Authors:Rebelein, J.G.
Deposit date:2019-01-10
Release date:2019-04-17
Last modified:2019-05-22
Method:X-RAY DIFFRACTION (1.45 Å)
Cite:Chemical Optimization of Whole-Cell Transfer Hydrogenation Using Carbonic Anhydrase as Host Protein.
Acs Catalysis, 9, 2019
6QFW
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HUMAN CARBONIC ANHYDRASE II WITH BOUND IRCP* COMPLEX (COFACTOR 9) TO GENERATE AN ARTIFICIAL TRANSFER HYDROGENASE (ATHASE)
Descriptor:Carbonic anhydrase 2, 4-[3-(8-chloranyl-2',3',4',5',6'-pentamethyl-4-oxidanyl-7-oxidanylidene-spiro[1$l^{4},8$l^{4}-diaza-9$l^{7}-iridabicyclo[4.3.0]nona-1,3,5-triene-9,1'-1$l^{7}-iridapentacyclo[2.2.0.0^{1,3}.0^{1,5}.0^{2,6}]hexane]-8-yl)propyl]benzenesulfonamide, ZINC ION, ...
Authors:Rebelein, J.G.
Deposit date:2019-01-10
Release date:2019-04-17
Last modified:2019-05-22
Method:X-RAY DIFFRACTION (1.2 Å)
Cite:Chemical Optimization of Whole-Cell Transfer Hydrogenation Using Carbonic Anhydrase as Host Protein.
Acs Catalysis, 9, 2019
6QFX
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HUMAN CARBONIC ANHYDRASE II WITH BOUND IRCP* COMPLEX (COFACTOR 10) TO GENERATE AN ARTIFICIAL TRANSFER HYDROGENASE (ATHASE)
Descriptor:Carbonic anhydrase 2, 2-(9-chloranyl-2',3',4',5',6'-pentamethyl-4-oxidanyl-7-oxidanylidene-spiro[1$l^{4},8-diaza-9$l^{8}-iridabicyclo[4.3.0]nona-1,3,5-triene-9,1'-1$l^{8}-iridapentacyclo[2.2.0.0^{1,3}.0^{1,5}.0^{2,6}]hexane]-8-yl)-~{N}-(4-sulfamoylphenyl)ethanamide, ZINC ION, ...
Authors:Rebelein, J.G.
Deposit date:2019-01-10
Release date:2019-04-17
Last modified:2019-05-22
Method:X-RAY DIFFRACTION (1.32 Å)
Cite:Chemical Optimization of Whole-Cell Transfer Hydrogenation Using Carbonic Anhydrase as Host Protein.
Acs Catalysis, 9, 2019
6GMI
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GENETIC ENGINEERING OF AN ARTIFICIAL METALLOENZYME FOR TRANSFER HYDROGENATION OF A SELF-IMMOLATIVE SUBSTRATE IN E. COLI'S PERIPLASM.
Descriptor:Streptavidin, {N-(4-{[2-(amino-kappaN)ethyl]sulfamoyl-kappaN}phenyl)-5-[(3aS,4S,6aR)-2-oxohexahydro-1H-thieno[3,4-d]imidazol-4-yl]pentanamide}(chloro)[(1,2,3,4,5-eta)-1,2,3,4,5-pentamethylcyclopentadienyl]iridium(III), IRIDIUM (III) ION
Authors:Rebelein, J.G.
Deposit date:2018-05-26
Release date:2018-10-10
Last modified:2018-10-31
Method:X-RAY DIFFRACTION (1.6 Å)
Cite:Genetic Engineering of an Artificial Metalloenzyme for Transfer Hydrogenation of a Self-Immolative Substrate in Escherichia coli's Periplasm.
J. Am. Chem. Soc., 140, 2018
6S4Q
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SCDSAV(SASK) - ENGINEERING SINGLE-CHAIN DIMERIC STREPTAVIDIN AS HOST FOR ARTIFICIAL METALLOENZYMES
Descriptor:Streptavidin, {N-(4-{[2-(amino-kappaN)ethyl]sulfamoyl-kappaN}phenyl)-5-[(3aS,4S,6aR)-2-oxohexahydro-1H-thieno[3,4-d]imidazol-4-yl]pentanamide}(chloro)[(1,2,3,4,5-eta)-1,2,3,4,5-pentamethylcyclopentadienyl]iridium(III), GLYCEROL
Authors:Rebelein, J.G.
Deposit date:2019-06-28
Release date:2019-09-25
Last modified:2019-10-16
Method:X-RAY DIFFRACTION (1.85 Å)
Cite:Breaking Symmetry: Engineering Single-Chain Dimeric Streptavidin as Host for Artificial Metalloenzymes.
J.Am.Chem.Soc., 141, 2019
6S50
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SCDSAV(SARK)MV2 - ENGINEERING SINGLE-CHAIN DIMERIC STREPTAVIDIN AS HOST FOR ARTIFICIAL METALLOENZYMES
Descriptor:Streptavidin, {N-(4-{[2-(amino-kappaN)ethyl]sulfamoyl-kappaN}phenyl)-5-[(3aS,4S,6aR)-2-oxohexahydro-1H-thieno[3,4-d]imidazol-4-yl]pentanamide}(chloro)[(1,2,3,4,5-eta)-1,2,3,4,5-pentamethylcyclopentadienyl]iridium(III), GLYCEROL, ...
Authors:Rebelein, J.G.
Deposit date:2019-06-29
Release date:2019-09-25
Last modified:2019-10-16
Method:X-RAY DIFFRACTION (2 Å)
Cite:Breaking Symmetry: Engineering Single-Chain Dimeric Streptavidin as Host for Artificial Metalloenzymes.
J.Am.Chem.Soc., 141, 2019
6Y25
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STREPTAVIDIN MUTANT S112R,K121E WITH A BIOTC4-1 COFACTOR - AN ARTIFICIAL IRON HYDROXYLASE
Descriptor:Streptavidin, biotC4-1 cofactor
Authors:Serrano-Plana, J., Rumo, C., Rebelein, J.G., Peterson, R.L., Barnet, M., Ward, T.R.
Deposit date:2020-02-14
Release date:2020-07-01
Method:X-RAY DIFFRACTION (1.95 Å)
Cite:Enantioselective Hydroxylation of Benzylic C(sp3)-H Bonds by an Artificial Iron Hydroxylase Based on the Biotin-Streptavidin Technology.
J.Am.Chem.Soc., 142, 2020
6Y2M
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STREPTAVIDIN MUTANT S112R WITH A BIOTC4-1 COFACTOR - AN ARTIFICIAL IRON HYDROXYLASE
Descriptor:Streptavidin, biotC4-1 cofactor
Authors:Serrano-Plana, J., Rumo, C., Rebelein, J.G., Peterson, R.L., Barnet, M., Ward, T.R.
Deposit date:2020-02-17
Release date:2020-07-01
Method:X-RAY DIFFRACTION (1.95 Å)
Cite:Enantioselective Hydroxylation of Benzylic C(sp3)-H Bonds by an Artificial Iron Hydroxylase Based on the Biotin-Streptavidin Technology.
J.Am.Chem.Soc., 142, 2020
6Y2T
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STREPTAVIDIN WILDTYPE WITH A BIOTC4-1 COFACTOR - AN ARTIFICIAL IRON HYDROXYLASE
Descriptor:Streptavidin, biotC4-1 cofactor, GLYCEROL
Authors:Serrano-Plana, J., Rumo, C., Rebelein, J.G., Peterson, R.L., Barnet, M., Ward, T.R.
Deposit date:2020-02-17
Release date:2020-07-01
Method:X-RAY DIFFRACTION (1.55 Å)
Cite:Enantioselective Hydroxylation of Benzylic C(sp3)-H Bonds by an Artificial Iron Hydroxylase Based on the Biotin-Streptavidin Technology.
J.Am.Chem.Soc., 142, 2020
6Y33
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STREPTAVIDIN MUTANT S112R WITH A BIOTC5-1 COFACTOR - AN ARTIFICIAL IRON HYDROXYLASE
Descriptor:Streptavidin, biotC5-1 cofactor, GLYCEROL
Authors:Serrano-Plana, J., Rumo, C., Rebelein, J.G., Peterson, R.L., Barnet, M., Ward, T.R.
Deposit date:2020-02-17
Release date:2020-07-01
Method:X-RAY DIFFRACTION (1.49 Å)
Cite:Enantioselective Hydroxylation of Benzylic C(sp3)-H Bonds by an Artificial Iron Hydroxylase Based on the Biotin-Streptavidin Technology.
J.Am.Chem.Soc., 142, 2020
6Y34
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STREPTAVIDIN WILDTYPE WITH A BIOTC5-1 COFACTOR - AN ARTIFICIAL IRON HYDROXYLASE
Descriptor:Streptavidin, biotC5-1 cofactor, GLYCEROL
Authors:Serrano-Plana, J., Rumo, C., Rebelein, J.G., Peterson, R.L., Barnet, M., Ward, T.R.
Deposit date:2020-02-17
Release date:2020-07-01
Method:X-RAY DIFFRACTION (1.307 Å)
Cite:Enantioselective Hydroxylation of Benzylic C(sp3)-H Bonds by an Artificial Iron Hydroxylase Based on the Biotin-Streptavidin Technology.
J.Am.Chem.Soc., 142, 2020
6Y3Q
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STREPTAVIDIN MUTANT S112R_K121E WITH A BIOTC5-1 COFACTOR - AN ARTIFICIAL IRON HYDROXYLASE
Descriptor:Streptavidin, biotC5-1 cofactor, SULFATE ION
Authors:Serrano-Plana, J., Rumo, C., Rebelein, J.G., Peterson, R.L., Barnet, M., Ward, T.R.
Deposit date:2020-02-18
Release date:2020-07-01
Method:X-RAY DIFFRACTION (1.95 Å)
Cite:Enantioselective Hydroxylation of Benzylic C(sp3)-H Bonds by an Artificial Iron Hydroxylase Based on the Biotin-Streptavidin Technology.
J.Am.Chem.Soc., 142, 2020