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一种高度混杂的β-酮脂酰-ACP合酶(KAS)III样蛋白参与了派克霉素的生物合成。

A Highly Promiscuous ß-Ketoacyl-ACP Synthase (KAS) III-like Protein Is Involved in Pactamycin Biosynthesis.

作者信息

Abugrain Mostafa E, Brumsted Corey J, Osborn Andrew R, Philmus Benjamin, Mahmud Taifo

机构信息

Department of Pharmaceutical Sciences, Oregon State University , Corvallis, Oregon 97333, United States.

Department of Chemistry, Oregon State University , Corvallis, Oregon 97333, United States.

出版信息

ACS Chem Biol. 2017 Feb 17;12(2):362-366. doi: 10.1021/acschembio.6b01043. Epub 2017 Jan 12.

Abstract

β-Ketoacyl-acyl carrier protein (β-Ketoacyl-ACP) synthase (KAS) III catalyzes the first step in fatty acid biosynthesis, involving a Claisen condensation of the acetyl-CoA starter unit with the first extender unit, malonyl-ACP, to form acetoacetyl-ACP. KAS III-like proteins have also been reported to catalyze acyltransferase reactions using coenzyme A esters or discrete ACP-bound substrates. Here, we report the in vivo and in vitro characterizations of a KAS III-like protein (PtmR), which directly transfers a 6-methylsalicylyl moiety from an iterative type I polyketide synthase to an aminocyclopentitol unit in pactamycin biosynthesis. PtmR is highly promiscuous, recognizing a wide array of S-acyl-N-acetylcysteamines as substrates to produce a suite of pactamycin derivatives with diverse alkyl and aromatic features. The results suggest that KAS III-like proteins may be used as versatile tools for modifications of complex natural products.

摘要

β-酮酰基-酰基载体蛋白(β-Ketoacyl-ACP)合酶(KAS)III催化脂肪酸生物合成的第一步,涉及乙酰辅酶A起始单元与第一个延伸单元丙二酰-ACP的克莱森缩合反应,以形成乙酰乙酰-ACP。据报道,类似KAS III的蛋白质也能催化使用辅酶A酯或离散的与ACP结合的底物的酰基转移反应。在此,我们报告了一种类似KAS III的蛋白质(PtmR)的体内和体外特性,该蛋白质在派克霉素生物合成中直接将一个6-甲基水杨酸部分从迭代型I聚酮合酶转移到氨基环戊醇单元上。PtmR具有高度的混杂性,能识别多种S-酰基-N-乙酰半胱胺作为底物,以产生一系列具有不同烷基和芳香特征的派克霉素衍生物。结果表明,类似KAS III的蛋白质可能用作修饰复杂天然产物的通用工具。

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