Moody Suzy C, Loveridge E Joel
Department of Biosciences, College of Science, Swansea University, Swansea, UK.
J Appl Microbiol. 2014 Dec;117(6):1549-63. doi: 10.1111/jam.12662. Epub 2014 Nov 4.
The cytochromes P450 (CYP or P450) are a large superfamily of haem-containing enzymes found in all domains of life. They catalyse a variety of complex reactions, predominantly mixed-function oxidations, often displaying highly regio- and/or stereospecific chemistry. In streptomycetes, they are predominantly associated with secondary metabolite biosynthetic pathways or with xenobiotic catabolism. Homologues of one family, CYP105, have been found in all Streptomyces species thus far sequenced. This review looks at the diverse biological functions of CYP105s and the biosynthetic/catabolic pathways they are associated with. Examples are presented showing a range of biotransformative abilities and different contexts. As biocatalysts capable of some remarkable chemistry, CYP105s have great biotechnological potential and merit detailed study. Recent developments in biotechnological applications which utilize CYP105s are described, alongside a brief overview of the benefits and drawbacks of using P450s in commercial applications. The role of CYP105s in vivo is in many cases undefined and provides a rich source for further investigation into the functions these enzymes fulfil and the metabolic pathways they participate in, in the natural environment.
细胞色素P450(CYP或P450)是一类含血红素的酶的大家族,存在于所有生命域中。它们催化各种复杂反应,主要是混合功能氧化反应,常常表现出高度的区域和/或立体特异性化学性质。在链霉菌中,它们主要与次级代谢物生物合成途径或外源物质分解代谢相关。到目前为止,在所有已测序的链霉菌物种中都发现了一个家族CYP105的同源物。本综述探讨了CYP105的多种生物学功能以及它们所关联的生物合成/分解代谢途径。文中给出了一系列展示其生物转化能力范围和不同背景的例子。作为能够进行一些非凡化学反应的生物催化剂,CYP105具有巨大的生物技术潜力,值得深入研究。本文描述了利用CYP105的生物技术应用的最新进展,同时简要概述了在商业应用中使用P450的优缺点。在许多情况下,CYP105在体内的作用尚不明确,这为进一步研究这些酶在自然环境中所发挥的功能以及它们参与的代谢途径提供了丰富的研究资源。