Ene-reductase Yers-ER from Yersinia bercovieri

Enzyme Description

Extremophile
No
EC Number

Sequence

Length: 365 amino acids
MKTAKLFSPLKVGALTLPNRVFMAPLTRLRSIEPGDIPTPLMAEYYRQRASAGLIITEATQISFQAKGYAGAPGLHTQEQLNAWKKITQAVHEEGGHIAVQLWHVGRISHSSLQPGQQAPVAPSAIAADTRTTVRDENGAWVRVPCSTPRALETEEIPGIINDFRQATANAREAGFDYIELHAAHGYLLHQFMSPASNQRTDQYGGSIENRTRLTLEVVDATAAQWSAERIGIRISPLGPFNGLDNGEDQEEAALYLIDELNKRHIAYLHISEPDWAGGKPYSEAFRDAVRARFKGVIIGAGAYTAEKAEELIEKGFIDAVAFGRSYISNPDLVARLQQHAPLNEPDGETFYGGGAKGYTDYPTL
Yanto Yanto et al. (2011) β€” Asymmetric bioreduction of alkenes using ene-reductases YersER and KYE1 and effects of organic solvents
Organic Letters  Β· doi:10.1021/ol200394p β†—  Β· Stability - C50 Activity + Stability - Conversion Specificity - Enantioselectivity
84 measurements
Database ID
Sequence Annotation
Explicit - Provided GenBank Accession Number
Protein Source
Recombinant, host bacterium Escherichia coli BL21

Experimental Data (84 measurements)

84 measurements β€” page 1 of 5
Property Assay Solvent Solvent Volume Aqueous Reference Measured Value Units Solution pH Temperature Substrate(s) Product(s) Cofactor(s) Shaking Comments
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Ethylene Glycol 50% 94.0 62.0 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM Citral Citronellal 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Methanol 20% 100.0 61.8 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM 2-Cyclohexen-1-one Cyclohexanone 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Propylene Glycol 20% 100.0 3.1 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM 2-Cyclohexen-1-one Cyclohexanone 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Ethanol 20% 100.0 6.9 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM 2-Cyclohexen-1-one Cyclohexanone 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Dimethyl Sulfoxide (DMSO) 20% 100.0 100.0 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM 2-Cyclohexen-1-one Cyclohexanone 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Dimethylformamide (DMF) 20% 100.0 5.1 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM 2-Cyclohexen-1-one Cyclohexanone 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Acetonitrile 20% 100.0 0.6 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM 2-Cyclohexen-1-one Cyclohexanone 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Acetone 20% 100.0 9.8 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM 2-Cyclohexen-1-one Cyclohexanone 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography 1,4-Dioxane 20% 100.0 10.7 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM 2-Cyclohexen-1-one Cyclohexanone 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Tetrahydrofuran (THF) 20% 100.0 1.0 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM 2-Cyclohexen-1-one Cyclohexanone 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Toluene 20% 100.0 98.1 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM 2-Cyclohexen-1-one Cyclohexanone 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography n-Hexane 20% 100.0 94.8 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM 2-Cyclohexen-1-one Cyclohexanone 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Ethylene Glycol 10% 94.0 92.0 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM Citral Citronellal 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Ethylene Glycol 20% 94.0 91.0 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM Citral Citronellal 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Ethylene Glycol 30% 94.0 88.0 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM Citral Citronellal 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Ethylene Glycol 40% 94.0 60.0 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM Citral Citronellal 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Ethylene Glycol 20% 100.0 100.0 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM 2-Cyclohexen-1-one Cyclohexanone 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Dimethyl Sulfoxide (DMSO) 10% 94.0 84.0 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM Citral Citronellal 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Dimethyl Sulfoxide (DMSO) 20% 94.0 65.0 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM Citral Citronellal 0.2 mM NADP+ β€” Classical aqueous control (in %)
Activity + Stability - Conversion Conversion after incubation (12 hours at 30Β°C) in the presence of organic solvent, measured by gas chromatography Dimethyl Sulfoxide (DMSO) 30% 94.0 55.0 % 200 mM phosphate buffern 20 mM glucose, 10 U/ml GDH (cofactor recycling) 7.5 30Β°C 10 mM Citral Citronellal 0.2 mM NADP+ β€” Classical aqueous control (in %)
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Visualization : Stability β€” C50

One bar per measurement. Colour = solvent, shade = temperature. Hover for details.

Visualization : Activity + Stability β€” Conversion

One bar per measurement. Colour = solvent, shade = solvent volume.

Visualization : Specificity β€” Enantioselectivity

One bar per measurement. Colour = solvent, shade = solvent volume.

Structure

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