McDaniel R, Ebert-Khosla S, Hopwood D A, Khosla C
Department of Chemical Engineering, Stanford University, California 94305-5025, USA.
Nature. 1995 Jun 15;375(6532):549-54. doi: 10.1038/375549a0.
Recent advances in understanding of bacterial aromatic polyketide biosynthesis allow the development of a set of design rules for the rational manipulation of chain synthesis, reduction of keto groups and early cyclization steps by genetic engineering. The concept of rational design is illustrated by the preparation of Streptomyces strains that produce two new polyketides by expression of combinations of appropriate enzymatic subunits from naturally occurring polyketide synthases. The potential for generating molecular diversity within this class of molecules by genetic engineering is enormous.
对细菌芳香聚酮生物合成理解的最新进展,使得能够制定一套设计规则,用于通过基因工程合理操控链合成、酮基还原及早期环化步骤。合理设计的概念通过制备链霉菌菌株得以体现,这些菌株通过表达天然存在的聚酮合酶中适当酶亚基的组合来产生两种新的聚酮化合物。通过基因工程在这类分子中产生分子多样性的潜力巨大。