Bacterial cytochrome P450-catalyzed regio- and stereoselective steroid hydroxylation enabled by directed evolution and rational design
Регио- и стереоселективное гидроксилирование стероидов под действием бактериальных цитохромов P450, достигнутое методами направленной эволюции и рационального дизайна
2020-01-07
SCID: 54.1/u73jgz8m
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bacterial cytochrome P450sdirected evolutionrational designregio- and stereoselectivitysteroid hydroxylation
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Abstract (AI)
Abstract Steroids are the most widely marketed products by the pharmaceutical industry after antibiotics. Steroid hydroxylation is one of the most important functionalizations because their derivatives enable a higher biological activity compared to their less polar non-hydroxylated analogs. Bacterial cytochrome P450s constitute promising biocatalysts for steroid hydroxylation due to their high expression level in common workhorses like Escherichia coli. However, they often suffer from wrong or insufficient regio- and/or stereoselectivity, low activity, narrow substrate range as well as insufficient thermostability, which hampers their industrial application. Fortunately, these problems can be generally solved by protein engineering based on directed evolution and rational design. In this work, an overview of recent developments on the engineering of bacterial cytochrome P450s for steroid hydroxylation is presented.
Key Findings
1
Bacterial cytochrome P450s are promising steroid-hydroxylation biocatalysts because they can be highly expressed in Escherichia coli.
2
Directed evolution and rational protein design can generally address these performance limitations and improve bacterial P450 suitability for industrial steroid hydroxylation.
3
Improved steroid hydroxylation is industrially important because hydroxylated derivatives often have higher biological activity than non-hydroxylated analogs.
4
The work reviews recent advances in engineering bacterial cytochrome P450s to achieve regio- and stereoselective steroid hydroxylation.
5
Unengineered bacterial cytochrome P450s commonly exhibit inadequate regio- and stereoselectivity, low activity, limited substrate scope, and insufficient thermostability.
Research Object
bacterial cytochrome P450s catalyzing steroid hydroxylation
Research Subject
engineering of regioselectivity, stereoselectivity, activity, substrate range, and thermostability for steroid hydroxylation
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2020-01-07
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