Urlacher Vlada B, Eiben Sabine
Institute of Technical Biochemistry, University of Stuttgart, Allmandring 31, D-70569 Stuttgart, Germany.
Trends Biotechnol. 2006 Jul;24(7):324-30. doi: 10.1016/j.tibtech.2006.05.002. Epub 2006 Jun 6.
Cytochrome P450 monooxygenases are versatile biocatalysts that introduce oxygen into a vast range of molecules. These enzymes catalyze diverse reactions in a regio- and stereoselective manner, and their properties have been used for drug development, bioremediation and the synthesis of fine chemicals and other useful compounds. However, the potential of P450 monooxygenases has not been fully exploited; there are some drawbacks limiting the broader implementation of these catalysts for commercial needs. Protein engineering has produced P450 enzymes with widely altered substrate specificities, substantially increased activity and higher stability. Furthermore, electrochemical and enzymatic approaches for the replacement or regeneration of NAD(P)H have been developed, enabling the more cost-effective use of P450 enzymes. In this review, we focus on the aspects relevant to the synthetic applications of P450 enzymes and their optimization for commercial needs.
细胞色素P450单加氧酶是一种多功能生物催化剂,可将氧引入到大量分子中。这些酶以区域和立体选择性的方式催化各种反应,其特性已被用于药物开发、生物修复以及精细化学品和其他有用化合物的合成。然而,P450单加氧酶的潜力尚未得到充分开发;存在一些缺点限制了这些催化剂为满足商业需求而得到更广泛的应用。蛋白质工程已产生了底物特异性广泛改变、活性大幅提高且稳定性更高的P450酶。此外,还开发了用于替代或再生NAD(P)H的电化学和酶促方法,从而能够更经济高效地使用P450酶。在本综述中,我们重点关注与P450酶的合成应用及其针对商业需求进行优化相关的方面。