Guengerich F P
Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0146, USA.
Environ Health Perspect. 1995 Jun;103 Suppl 5(Suppl 5):25-8. doi: 10.1289/ehp.95103s425.
The cytochrome P450 enzymes are major catalysts involved in the oxidations of xenobiotic chemicals in microorganisms as well as higher animals and plants. Because of their functional roles, they offer potential in biodegradation technology. A number of microbial P450s have already been characterized and offer advantages in terms of their high catalytic rates and facile expression in microorganisms. One approach to extending the catalytic selectivity to more compounds in the environment is rational design. In three cases, the three-dimensional structures of bacterial cytochrome P450 enzymes are available and can be further understood through studies with molecular dynamics. Many mammalian cytochrome P450 enzymes have been studied extensively and have potential for biodegradation because of their broad catalytic selectivities (e.g., P450 2E1). Several advances have been made in the heterologous expression of these proteins in microorganisms. Improvements under development include electron transfer from flavodoxin and the use of cytochrome P450:NADPH-cytochrome P450 reductase fusion proteins. Random mutagenesis offers the potential of improving the catalytic activities of some of these proteins. Future challenges include the use of cytochrome P450 expression vectors in microorganisms capable of thriving in the environment; recent success in expression of vectors in Salmonella genotoxicity tester strains may be encouraging in this regard.
细胞色素P450酶是参与微生物以及高等动植物中外源化学物质氧化的主要催化剂。由于它们的功能作用,在生物降解技术方面具有潜力。许多微生物P450已经得到表征,并且在催化速率高和易于在微生物中表达方面具有优势。将催化选择性扩展到环境中更多化合物的一种方法是合理设计。在三种情况下,可以获得细菌细胞色素P450酶的三维结构,并且可以通过分子动力学研究进一步了解。许多哺乳动物细胞色素P450酶已经得到广泛研究,并且由于其广泛的催化选择性(例如,P450 2E1)而具有生物降解潜力。在这些蛋白质在微生物中的异源表达方面已经取得了一些进展。正在开发的改进包括来自黄素氧还蛋白的电子转移以及细胞色素P450:NADPH-细胞色素P450还原酶融合蛋白的使用。随机诱变提供了提高其中一些蛋白质催化活性的潜力。未来的挑战包括在能够在环境中茁壮成长的微生物中使用细胞色素P450表达载体;最近在沙门氏菌遗传毒性测试菌株中表达载体的成功在这方面可能是令人鼓舞的。