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Recent Advances in Adenylation Domain Enzymology in Nonribosomal Peptide Biosynthesis

机译:非核糖体肽生物合成中腺苷酸化域酶学的最新进展

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Microorganisms produce a large number of peptide-based natural products that display a broad range of biologically interesting properties, including antimicrobial, immunosuppressant, and anticancer activities, as well as behaving as virulence factors and signaling molecules. These peptide natural products are composed of proteinogenic amino acids, as well as a number of other compound classes, including non-proteinogenic amino acids, aryl acids, fatty acids, hydroxyl acids, heterocyclic rings, and sugars, which provide a complex level of chemical diversity. Many of these natural products are biosynthesized by large, highly versatile multifunctional megasynthetases, which are known as nonribosomal peptide synthetases (NRPSs). The adenylation (A) domains found in all NRPS modules are essential catalytic components and function as gatekeepers to select the appropriate amino acid building blocks during nonribosomal peptide (NRP) biosynthesis. The results of extensive periods of genetic, biochemical, and bioinformatic investigations have provided a detailed understanding of the functional characteristics and molecular basis underpinning the A domain enzymology in NRP biosynthesis. This review will therefore focus on the recent discoveries and breakthroughs in the structural elucidation, molecular mechanism, and chemical biology underlying the A domains within NRPS enzymes.
机译:微生物产生大量基于肽的天然产物,这些产物显示出广泛的生物学特性,包括抗微生物,免疫抑制剂和抗癌活性,以及​​表现为毒力因子和信号分子。这些肽类天然产物由蛋白原氨基酸以及许多其他化合物类别组成,包括非蛋白原氨基酸,芳基酸,脂肪酸,羟基酸,杂环和糖,它们提供了复杂的化学成分多样性。这些天然产物中的许多是由大型的,高度通用的多功能巨型合成酶生物合成的,这种合成酶称为非核糖体肽合成酶(NRPS)。在所有NRPS模块中发现的腺苷酸化(A)域都是必不可少的催化成分,并在非核糖体肽(NRP)生物合成过程中充当守门员,以选择合适的氨基酸构件。广泛的遗传,生化和生物信息学研究结果为对NRP生物合成中A结构域酶学基础的功能特征和分子基础提供了详细的了解。因此,本综述将侧重于NRPS酶A结构域基础的结构阐明,分子机理和化学生物学方面的最新发现和突破。

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