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负责在诺尔斯链霉菌中多烯大环内酯类抗生素制霉菌素生物合成过程中进行C-10羟基化的P450单加氧酶NysL的特性分析。

Characterization of the P450 monooxygenase NysL, responsible for C-10 hydroxylation during biosynthesis of the polyene macrolide antibiotic nystatin in Streptomyces noursei.

作者信息

Volokhan Olga, Sletta Håvard, Ellingsen Trond E, Zotchev Sergey B

机构信息

Department of Biotechnology, Norwegian University of Science and Technology, N-7491 Trondheim, Norway.

出版信息

Appl Environ Microbiol. 2006 Apr;72(4):2514-9. doi: 10.1128/AEM.72.4.2514-2519.2006.

Abstract

The nysL gene, encoding a putative P450 monooxygenase, was identified in the nystatin biosynthetic gene cluster of Streptomyces noursei. Although it has been proposed that NysL is responsible for hydroxylation of the nystatin precursor, experimental evidence for this activity was lacking. The nysL gene was inactivated in S. noursei by gene replacement, and the resulting mutant was shown to produce 10-deoxynystatin. Purification and an in vitro activity assay for 10-deoxynystatin demonstrated its antifungal activity being equal to that of nystatin. The NysL protein was expressed heterologously in Escherichia coli as a His-tagged protein and used in an enzyme assay with 10-deoxynystatin as a substrate. The results obtained clearly demonstrated that NysL is a hydroxylase responsible for the post-polyketide synthase modification of 10-deoxynystatin at position C-10. Kinetic studies with the purified recombinant enzyme allowed determination of K(m) and k(cat) and revealed no inhibition of recombinant NysL by either the substrate or the product. These studies open the possibility for in vitro evolution of NysL aimed at changing its specificity, thereby providing new opportunities for engineered biosynthesis of novel nystatin analogues hydroxylated at alternative positions of the macrolactone ring.

摘要

在诺尔斯链霉菌的制霉菌素生物合成基因簇中鉴定出了编码假定的细胞色素P450单加氧酶的nysL基因。尽管有人提出NysL负责制霉菌素前体的羟基化,但缺乏该活性的实验证据。通过基因置换使nysL基因在诺尔斯链霉菌中失活,结果表明所得突变体产生10-脱氧制霉菌素。对10-脱氧制霉菌素的纯化和体外活性测定表明其抗真菌活性与制霉菌素相当。NysL蛋白在大肠杆菌中作为His标签蛋白进行异源表达,并用于以10-脱氧制霉菌素为底物的酶活性测定。所获得的结果清楚地表明,NysL是一种羟化酶,负责10-脱氧制霉菌素在C-10位的聚酮合酶后修饰。对纯化的重组酶进行动力学研究,确定了K(m)和k(cat),并表明底物或产物均不抑制重组NysL。这些研究为NysL的体外定向进化提供了可能性,旨在改变其特异性,从而为在大环内酯环的其他位置羟基化的新型制霉菌素类似物的工程生物合成提供新的机会。

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