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委内瑞拉链霉菌中杂交模块化聚酮合酶产生多种生物活性大环内酯类化合物。

Generation of multiple bioactive macrolides by hybrid modular polyketide synthases in Streptomyces venezuelae.

作者信息

Yoon Yeo Joon, Beck Brian J, Kim Beom Seok, Kang Han Young, Reynolds Kevin A, Sherman David H

机构信息

Department of Microbiology and Biotechnology Institute, University of Minnesota, Mayo Mail Code 196, 1460 Mayo Memorial Building, Minneapolis, MN 55455, USA.

出版信息

Chem Biol. 2002 Feb;9(2):203-14. doi: 10.1016/s1074-5521(02)00095-9.

Abstract

The plasmid-based replacement of the multifunctional protein subunits of the pikromycin PKS in S. venezuelae by the corresponding subunits from heterologous modular PKSs resulted in recombinant strains that produce both 12- and 14-membered ring macrolactones with predicted structural alterations. In all cases, novel macrolactones were produced and further modified by the DesVII glycosyltransferase and PikC hydroxylase, leading to biologically active macrolide structures. These results demonstrate that hybrid PKSs in S. venezuelae can produce a multiplicity of new macrolactones that are modified further by the highly flexible DesVII glycosyltransferase and PikC hydroxylase tailoring enzymes. This work demonstrates the unique capacity of the S. venezuelae pikromycin pathway to expand the toolbox of combinatorial biosynthesis and to accelerate the creation of novel biologically active natural products.

摘要

用来自异源模块化聚酮合酶(PKS)的相应亚基,基于质粒替换委内瑞拉链霉菌中苦霉素PKS的多功能蛋白质亚基,产生了重组菌株,这些菌株产生了具有预测结构改变的12元和14元环大内酯。在所有情况下,新型大内酯都由DesVII糖基转移酶和PikC羟化酶产生并进一步修饰,从而形成具有生物活性的大环内酯结构。这些结果表明,委内瑞拉链霉菌中的杂合PKS可以产生多种新的大内酯,这些大内酯会被高度灵活的DesVII糖基转移酶和PikC羟化酶修饰酶进一步修饰。这项工作证明了委内瑞拉链霉菌苦霉素途径在扩展组合生物合成工具箱和加速新型生物活性天然产物创造方面的独特能力。

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