Ene-reductase OYE1 from Saccharomyces pastorianus

Enzyme Description

Extremophile
No
EC Number

Sequence

Length: 400 amino acids
MSFVKDFKPQALGDTNLFKPIKIGNNELLHRAVIPPLTRMRALHPGNIPNRDWAVEYYTQRAQRPGTMIITEGAFISPQAGGYDNAPGVWSEEQMVEWTKIFNAIHEKKSFVWVQLWVLGWAAFPDNLARDGLRYDSASDNVFMDAEQEAKAKKANNPQHSLTKDEIKQYIKEYVQAAKNSIAAGADGVEIHSANGYLLNQFLDPHSNTRTDEYGGSIENRARFTLEVVDALVEAIGHEKVGLRLSPYGVFNSMSGGAETGIVAQYAYVAGELEKRAKAGKRLAFVHLVEPRVTNPFLTEGEGEYEGGSNDFVYSIWKGPVIRAGNFALHPEVVREEVKDKRTLIGYGRFFISNPDLVDRLEKGLPLNKYDRDTFYQMSAHGYIDYPTYEEALKLGWDKK
Frieda A. Sorgenfrei et al. (2024) β€” Solvent concentration at 50% protein unfolding may reform enzyme stability ranking and process window identification
Nature Communications  Β· doi:10.1038/s41467-024-49774-0 β†—  Β· Activity - Classical Stability - Tm
150 measurements
Database ID
UniProt: Q02899 β†—
Sequence Annotation
Explicit - Provided UniProt Accession Number
Protein Source
Recombinant, host bacterium Escherichia coli BL21 (DE3)

Experimental Data (150 measurements)

150 measurements β€” page 2 of 8
Property Assay Solvent Solvent Volume Aqueous Reference Measured Value Units Solution pH Temperature Substrate(s) Product(s) Cofactor(s) Shaking Comments
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Isopropanol 15% 100.0 152.5 % 50 mM sodium phosphate 7.4 Room temperature 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Isopropanol 20% 100.0 147.5 % 50 mM sodium phosphate 7.4 Room temperature 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Isopropanol 25% 100.0 163.9 % 50 mM sodium phosphate 7.4 Room temperature 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Isopropanol 30% 100.0 168.0 % 50 mM sodium phosphate 7.4 Room temperature 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent 1-Propanol 5% 100.0 122.3 % 50 mM sodium phosphate 7.4 Room temperature 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent 1-Propanol 10% 100.0 140.8 % 50 mM sodium phosphate 7.4 Room temperature 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent 1-Propanol 15% 100.0 139.2 % 50 mM sodium phosphate 7.4 Room temperature 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent 1-Propanol 20% 100.0 143.1 % 50 mM sodium phosphate 7.4 Room temperature 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent 1-Propanol 25% 100.0 141.5 % 50 mM sodium phosphate 7.4 Room temperature 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent 1-Propanol 30% 100.0 150.8 % 50 mM sodium phosphate 7.4 Room temperature 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Ethanol 5% 100.0 140.0 % 50 mM sodium phosphate 7.4 25 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data of reaction temperature screening
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Ethanol 10% 100.0 135.0 % 50 mM sodium phosphate 7.4 25 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data of reaction temperature screening
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Ethanol 15% 100.0 160.0 % 50 mM sodium phosphate 7.4 25 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data of reaction temperature screening
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Ethanol 20% 100.0 180.0 % 50 mM sodium phosphate 7.4 25 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data of reaction temperature screening
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Ethanol 25% 100.0 135.0 % 50 mM sodium phosphate 7.4 25 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data of reaction temperature screening
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Ethanol 30% 100.0 75.0 % 50 mM sodium phosphate 7.4 25 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data of reaction temperature screening
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Ethanol 35% 100.0 35.0 % 50 mM sodium phosphate 7.4 25 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data of reaction temperature screening
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Ethanol 40% 100.0 10.0 % 50 mM sodium phosphate 7.4 25 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data of reaction temperature screening
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Ethanol 45% 100.0 5.0 % 50 mM sodium phosphate 7.4 25 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data of reaction temperature screening
Activity - Classical Activity measured by absorbance spectrophotometry (NAD(P)H absorbance measurement, 340 nm) in the presence of organic solvent Ethanol 5% 100.0 139.1 % 50 mM sodium phosphate 7.4 30 10 mM Cyclohex-2-enone Cyclohexane 0.2 mM NAD(P)H β€” Classical aqueous control (in %) | Raw activity data of reaction temperature screening
1 2 3 4 … 8

Visualization : Activity β€” Classical

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

Visualization : Stability β€” Tm

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

Structure

Drag to rotate Β· Scroll to zoom Β· Right-click drag to pan Β· Powered by Mol*