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Crystal structure of DhbE, an archetype for aryl acid activating domains of modular nonribosomal peptide synthetases

机译:DhbE的晶体结构,模块化非核糖体肽合成酶的芳酸激活域的原型

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摘要

The synthesis of the catecholic siderophore bacillibactin is accomplished by the nonribosomal peptide synthetase (NRPS) encoded by the dhb operon. DhbE is responsible for the initial step in bacillibactin synthesis, the activation of the aryl acid 2,3-dihydroxy-benzoate (DHB). The stand-alone adenylation (A) domain DhbE, the structure of which is presented here, exhibits greatest homol-ogy to other NRPS A-domains, acyl-CoA ligases and luciferases. It's structure is solved in three different states, without the ligands ATP and DHB (native state), with the product DHB-AMP (adenylate state) and with the hydrolyzed product AMP and DHB (hydrolyzed state). The 59.9-kDa protein folds into two domains, with the active site at the interface between them. In contrast to previous proposals of a major reorientation of the large and small domains on substrate binding, we observe only local structural rearrangements. The structure of the phosphate binding loop could be determined, a motif common to many adenylate-forming enzymes, as well as with bound DHB-adenylate and the hydrolyzed product DHB*AMP. Based on the structure and amino acid sequence alignments, an adapted specificity conferring code for aryl acid activating domains is proposed, allowing assignment of substrate specificity to gene products of previously unknown function.
机译:儿茶酚铁载体杆菌素的合成是通过dhb操纵子编码的非核糖体肽合成酶(NRPS)完成的。 DhbE负责细菌杆菌素合成的起始步骤,即芳酸2,3-二羟基苯甲酸酯(DHB)的活化。此处显示结构的独立腺苷酸化(A)结构域DhbE与其他NRPS A结构域,酰基CoA连接酶和萤光素酶表现出最大的同源性。它的结构以三种不同的状态解析,没有配体ATP和DHB(天然状态),有DHB-AMP产物(腺苷酸状态)和水解产物AMP和DHB(水解状态)。 59.9-kDa蛋白折叠成两个结构域,活性位点位于它们之间的界面上。与以前的提议在底物结合上对大域和小域进行重大重新定向的提议相反,我们仅观察到局部结构重排。可以确定磷酸盐结合环的结构,这是许多形成腺苷酸的酶以及结合的DHB-腺苷酸和水解产物DHB * AMP共有的基序。基于结构和氨基酸序列的比对,提出了适合芳基酸激活域的特异性赋予密码,允许将底物特异性分配给先前未知功能的基因产物。

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