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多模块聚酮合酶中底物结构与酮还原选择性之间的关系:使用复杂前体类似物对晚期模块中 A 型酮还原酶的比较研究。

The Relationship between Substrate Structure and Selectivity of Ketoreduction in Multimodular Polyketide Synthases: A Comparative Study of A-Type Ketoreductases from Late Modules Using Complex Precursor Analogues.

作者信息

Nguyen Lisa N K T, Derra Sebastian, Hahn Frank

机构信息

Professur Organische Chemie IV, Fakultät für Biologie, Chemie und Geowissenschaften, Department of Chemistry, Universität Bayreuth, 95447 Bayreuth, Germany.

出版信息

ACS Chem Biol. 2025 Jan 17;20(1):186-196. doi: 10.1021/acschembio.4c00669. Epub 2025 Jan 8.

Abstract

Ketoreductases (KRs) are domains in the reductive loops of type I polyketide synthases (PKSs) and are responsible for the majority of stereocenters in reduced polyketides. Although the highly stereoselective reduction of ACP-bound β-ketothioester intermediates by KRs is crucial for the overall functioning of PKSs, the substrate-dependent stereoselectivity of KRs is a factor that is not yet fully understood, especially for KR domains in late PKS modules that act on biosynthetic precursors with complex polyketidic moieties. We present studies on the three KR domains FosKR7, PlmKR6, and EryKR6 from the biosynthetic pathways of fostriecin, phoslactomycin, and erythromycin by in vitro assays using close surrogates of the octaketidic FosKR7 biosynthetic precursor, complex derivatives and a diketide in the form of their biomimetic -acetylcysteamine thioesters. Supported by molecular modeling, specific interactions of the studied KR domains with the extended polyketide moieties of their natural precursors were identified and correlated to the differences in stereoselectivity observed in the in vitro assays. These results reinforce the importance of the substrate-dependent stereoselectivity of KR domains in PKSs and suggest more detailed experimental and structural studies with isolated KRs and full PKS modules that could ultimately lead to improved results in PKS engineering.

摘要

酮还原酶(KRs)是I型聚酮合酶(PKSs)还原环中的结构域,负责还原型聚酮化合物中大部分的立体中心。尽管KRs对与酰基载体蛋白(ACP)结合的β-酮硫酯中间体进行高度立体选择性还原对于PKSs的整体功能至关重要,但KRs的底物依赖性立体选择性仍是一个尚未完全理解的因素,尤其是对于后期PKS模块中的KR结构域,其作用于具有复杂聚酮部分的生物合成前体。我们通过体外实验,使用八酮酸FosKR7生物合成前体的紧密替代物、复杂衍生物以及其二酮类似物的仿生-乙酰半胱氨酸硫酯形式,对来自福司曲星、磷霉素和红霉素生物合成途径的三个KR结构域FosKR7、PlmKR6和EryKR6进行了研究。在分子模拟的支持下,确定了所研究的KR结构域与其天然前体的扩展聚酮部分之间的特异性相互作用,并将其与体外实验中观察到的立体选择性差异相关联。这些结果强化了PKSs中KR结构域的底物依赖性立体选择性的重要性,并建议对分离的KRs和完整的PKS模块进行更详细的实验和结构研究,这最终可能会在PKS工程中带来更好的结果。

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