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来自橄榄色链霉菌S-140的产链黑霉素的杂合非核糖体肽/聚酮合酶中的链起始。直接装载D-丙氨酸的离散单功能腺苷化酶和肽基载体蛋白。

Chain initiation in the leinamycin-producing hybrid nonribosomal peptide/polyketide synthetase from Streptomyces atroolivaceus S-140. Discrete, monofunctional adenylation enzyme and peptidyl carrier protein that directly load D-alanine.

作者信息

Tang Gong-Li, Cheng Yi-Qiang, Shen Ben

机构信息

Division of Pharmaceutical Sciences, University of Wisconsin, 777 Highland Avenue, Madison, WI 53705, USA.

出版信息

J Biol Chem. 2007 Jul 13;282(28):20273-82. doi: 10.1074/jbc.M702814200. Epub 2007 May 14.

Abstract

Nonribosomal peptide natural products are biosynthesized from amino acid precursors by nonribosomal peptide synthetases (NRPSs), which are organized into modules. For a typical NRPS initiation module, an adenylation (A) domain activates an amino acid and installs it onto a peptidyl carrier protein (PCP) domain as a thioester; an elongation module, which has a condensation (C) domain located between every consecutive pair of A and PCP domains, catalyzes the formation of the peptide bond between the upstream aminoacyl/peptidyl-S-PCP and the free amino group of the downstream aminoacyl-S-PCP. D-amino acid constituents in peptide natural products usually arise from the L-enantiomers through the action of integral epimerization (E) domains of an NRPS. The biosynthetic gene cluster for leinamycin, a hybrid nonribosomal peptide/polyketide containing a D-alanine moiety, does not encode a typical NRPS initiation module with the expected A-PCP-E domains; instead, it has only an A protein (LnmQ) and a PCP (LnmP), both of which are encoded by separate genes. Here we show the results of biochemical experiments as follows: (i) we demonstrate that LnmQ directly activates D-alanine as D-alaninyl-AMP and installs it onto LnmP to generate a D-alaninyl-S-PCP intermediate; (ii) we confirm that aminoacylation of LnmP by LnmQ in trans is the result of specific communication between the separate A and PCP proteins; and (iii) we reveal that leinamycin production can be improved by supplementation of exogenous D-alanine in the fermentation broth of Streptomyces atroolivaceous S-140. These findings unveil an unprecedented NRPS initiation module structure that is characterized by a discrete D-alanine-specific A protein and a PCP.

摘要

非核糖体肽天然产物由非核糖体肽合成酶(NRPS)从氨基酸前体生物合成,这些酶被组织成模块。对于典型的NRPS起始模块,一个腺苷化(A)结构域激活一种氨基酸并将其作为硫酯安装到肽基载体蛋白(PCP)结构域上;一个延伸模块,其在每对相邻的A和PCP结构域之间有一个缩合(C)结构域,催化上游氨酰基/肽基-S-PCP与下游氨酰基-S-PCP的游离氨基之间肽键的形成。肽天然产物中的D-氨基酸成分通常通过NRPS的整体差向异构化(E)结构域的作用从L-对映体产生。含有D-丙氨酸部分的杂合非核糖体肽/聚酮化合物雷纳霉素的生物合成基因簇不编码具有预期A-PCP-E结构域的典型NRPS起始模块;相反,它只有一个A蛋白(LnmQ)和一个PCP(LnmP),两者均由单独的基因编码。在此,我们展示了如下生化实验结果:(i)我们证明LnmQ直接将D-丙氨酸激活为D-丙氨酰-AMP,并将其安装到LnmP上以生成D-丙氨酰-S-PCP中间体;(ii)我们证实LnmQ反式对LnmP的氨酰化是单独的A和PCP蛋白之间特异性通讯的结果;(iii)我们揭示,通过在橄榄色链霉菌S-140的发酵液中补充外源D-丙氨酸,可以提高雷纳霉素的产量。这些发现揭示了一种前所未有的NRPS起始模块结构,其特征是有一个离散的D-丙氨酸特异性A蛋白和一个PCP。

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