Computational Insights into Amide Bond Formation Catalyzed by the Condensation Domain of Nonribosomal Peptide Synthetases

IF 3.7 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY ACS Omega Pub Date : 2024-06-22 DOI:10.1021/acsomega.4c02531
Basel Mansour,  and , James W. Gauld*, 
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Abstract

Nonribosomal peptide synthetases (NRPSs) are important enzymes that synthesize an array of nongenetically encoded peptides. The latter have diverse physicochemical properties and roles. NRPSs are modular enzymes in which, for example, the condensation (C-) domain catalyzes the formation of amide bonds. The NRPS tyrocidine synthetase from Brevibacillus brevis is responsible for synthesizing the cyclic-peptide antibiotic tyrocidine. The first step is formation of an amide bond between a proline and phenylalanine which is catalyzed by a C-domain. In this study, a multiscale computational approach (molecular dynamics and QM/MM) has been used to investigate substrate binding and catalytic mechanism of the C-domain of tyrocidine synthetase. Overall, the mechanism is found to proceed through three exergonic steps in which an active site Histidine, His222, acts as a base and acid. First, His222 acts as a base to facilitate nucleophilic attack of the prolyl nitrogen at the phenylalanyl’s carbonyl carbon. This is also the rate-limiting step with a free energy barrier of 38.8 kJ mol–1. The second step is collapse of the resulting tetrahedral intermediate with cleavage of the S–C bond between the phenylalanyl and its Ppant arm, along with formation of the above amide bond. Meanwhile, the now protonated His222 imidazole has rotated toward the newly formed thiolate of the Ppant arm. In the final step, His222 acts as an acid, protonating the thiolate and regenerating a neutral His222. The overall mechanism is found to be exergonic with the final product complex being 46.3 kJ mol–1 lower in energy than the initial reactant complex.

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非核糖体肽合成酶缩合域催化酰胺键形成的计算见解
非核糖体肽合成酶(NRPSs)是合成一系列非遗传编码肽的重要酶类。后者具有不同的理化性质和作用。NRPSs 是一种模块化酶,其中的缩合(C-)结构域可催化酰胺键的形成。来自 Brevibacillus brevis 的 NRPS 酪脒合成酶负责合成环肽抗生素酪脒。第一步是在脯氨酸和苯丙氨酸之间形成酰胺键,该过程由 C-结构域催化。本研究采用多尺度计算方法(分子动力学和 QM/MM)研究了底物结合和酪脒合成酶 C-结构域的催化机理。总体而言,研究发现该机制通过三个放能步骤进行,其中活性位点组氨酸(His222)既是碱又是酸。首先,His222 作为碱促进亲核攻击苯丙氨酰羰基上的脯氨酰氮。这也是自由能障为 38.8 kJ mol-1 的限速步骤。第二步是生成的四面体中间体塌缩,苯丙氨酰与其 Ppant 臂之间的 S-C 键裂解,同时形成上述酰胺键。与此同时,质子化的 His222 咪唑向 Ppant 臂上新形成的硫醇旋转。在最后一步,His222 发挥酸的作用,质子化硫代硫酸盐,再生出中性的 His222。研究发现,整个机制是放能的,最终产物复合物的能量比初始反应物复合物低 46.3 kJ mol-1。
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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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