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涉及聚酮β-甲基支链掺入的脱水酶/脱羧酶酶偶联物的结构与机制。

Structure and mechanism of a dehydratase/decarboxylase enzyme couple involved in polyketide β-methyl branch incorporation.

机构信息

School of Biochemistry, University of Bristol, University Walk, Bristol, BS8 1TD, UK.

School of Chemistry, University of Bristol, Cantock's Close, Bristol, BS8 1TS, UK.

出版信息

Sci Rep. 2020 Sep 18;10(1):15323. doi: 10.1038/s41598-020-71850-w.

Abstract

Complex polyketides of bacterial origin are biosynthesised by giant assembly-line like megaenzymes of the type 1 modular polyketide synthase (PKS) class. The trans-AT family of modular PKSs, whose biosynthetic frameworks diverge significantly from those of the archetypal cis-AT type systems represent a new paradigm in natural product enzymology. One of the most distinctive enzymatic features common to trans-AT PKSs is their ability to introduce methyl groups at positions β to the thiol ester in the growing polyketide chain. This activity is achieved through the action of a five protein HCS cassette, comprising a ketosynthase, a 3-hydroxy-3-methylglutaryl-CoA synthase, a dehydratase, a decarboxylase and a dedicated acyl carrier protein. Here we report a molecular level description, achieved using a combination of X-ray crystallography, in vitro enzyme assays and site-directed mutagenesis, of the bacillaene synthase dehydratase/decarboxylase enzyme couple PksH/PksI, responsible for the final two steps in β-methyl branch installation in this trans-AT PKS. Our work provides detailed mechanistic insight into this biosynthetic peculiarity and establishes a molecular framework for HCS cassette enzyme exploitation and manipulation, which has future potential value in guiding efforts in the targeted synthesis of functionally optimised 'non-natural' natural products.

摘要

细菌来源的复杂聚酮化合物是由 1 型模块化聚酮合酶(PKS)类的巨型装配线样巨型酶生物合成的。反式 AT 家族的模块化 PKS 与典型的顺式 AT 型系统的生物合成框架有很大的不同,代表了天然产物酶学的一个新范例。反式 AT PKS 共有的最显著的酶学特征之一是它们能够在生长的聚酮链中硫酯β位引入甲基。这种活性是通过由酮合酶、3-羟-3-甲基戊二酰辅酶 A 合酶、脱水酶、脱羧酶和专用酰基辅酶 A 组成的五蛋白 HCS 盒来实现的。在这里,我们使用 X 射线晶体学、体外酶测定和定点突变相结合的方法,对负责该反式 AT PKS 中β-甲基支链安装的最后两个步骤的芽孢杆菌烯合酶脱水酶/脱羧酶对 PksH/PksI 进行了分子水平的描述。我们的工作提供了对这种生物合成特殊性的详细机制见解,并为 HCS 盒酶的开发和操纵建立了分子框架,这在指导有针对性地合成功能优化的“非天然”天然产物方面具有未来的潜在价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0a1/7501309/570af8251fd3/41598_2020_71850_Fig1_HTML.jpg

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