Urlacher Vlada, Schmid Rolf D
Institute for Technical Biochemistry, University of Stuttgart, Allmandring 31, D-70569, Stuttgart, Germany.
Curr Opin Biotechnol. 2002 Dec;13(6):557-64. doi: 10.1016/s0958-1669(02)00357-9.
Recent studies on microbial cytochrome P450 enzymes have covered several new areas. Advances have been made in structure-function analysis and new non-enzymatic/electrochemical systems for the replacement of NAD(P)H in biocatalysis have been developed. Furthermore, the properties of some enzymes have been re-engineered by site-directed mutagenesis or by methods of directed evolution and new P450s have been functionally expressed and characterized. It is thought that a combination of these approaches will facilitate the use of isolated P450 monooxygenases in biocatalysis.
近期关于微生物细胞色素P450酶的研究涵盖了几个新领域。在结构-功能分析方面取得了进展,并且开发了用于生物催化中替代NAD(P)H的新型非酶/电化学系统。此外,通过定点诱变或定向进化方法对一些酶的特性进行了重新设计,并且新的P450酶已实现功能表达和表征。人们认为,这些方法的结合将有助于在生物催化中使用分离的P450单加氧酶。