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放线紫红素的合成途径:原子水平详细揭示的II型聚酮化合物酮还原酶对区域和立体选择性酮的还原作用

Path to Actinorhodin: Regio- and Stereoselective Ketone Reduction by a Type II Polyketide Ketoreductase Revealed in Atomistic Detail.

作者信息

Serapian Stefano A, Crosby John, Crump Matthew P, van der Kamp Marc W

机构信息

School of Biochemistry, University of Bristol, University Walk, Bristol BS8 1TD, United Kingdom.

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

出版信息

JACS Au. 2022 Apr 7;2(4):972-984. doi: 10.1021/jacsau.2c00086. eCollection 2022 Apr 25.

Abstract

In type II polyketide synthases (PKSs), which typically biosynthesize several antibiotic and antitumor compounds, the substrate is a growing polyketide chain, shuttled between individual PKS enzymes, while covalently tethered to an acyl carrier protein (ACP): this requires the ACP interacting with a series of different enzymes in succession. During biosynthesis of the antibiotic actinorhodin, produced by , one such key binding event is between an ACP carrying a 16-carbon octaketide chain (ACP) and a ketoreductase (KR). Once the octaketide is bound inside KR, it is likely cyclized between C7 and C12 and regioselective reduction of the ketone at C9 occurs: how these elegant chemical and conformational changes are controlled is not yet known. Here, we perform protein-protein docking, protein NMR, and extensive molecular dynamics simulations to reveal a probable mode of association between ACP and KR; we obtain and analyze a detailed model of the C7-C12-cyclized octaketide within the KR active site; and we confirm this model through multiscale (QM/MM) reaction simulations of the key ketoreduction step. Molecular dynamics simulations show that the most thermodynamically stable cyclized octaketide isomer (7,12) also gives rise to the most reaction competent conformations for ketoreduction. Subsequent reaction simulations show that ketoreduction is stereoselective as well as regioselective, resulting in an -alcohol. Our simulations further indicate several conserved residues that may be involved in selectivity of C7-12 cyclization and C9 ketoreduction. Detailed insights obtained on ACP-based substrate presentation in type II PKSs can help design ACP-ketoreductase systems with altered regio- or stereoselectivity.

摘要

在通常生物合成多种抗生素和抗肿瘤化合物的II型聚酮合酶(PKS)中,底物是一条不断增长的聚酮链,它在各个PKS酶之间穿梭,同时共价连接到酰基载体蛋白(ACP)上:这需要ACP依次与一系列不同的酶相互作用。在由 产生的抗生素放线紫红素的生物合成过程中,一个这样的关键结合事件发生在携带16碳八酮链的ACP(ACP)与酮还原酶(KR)之间。一旦八酮在KR内部结合,它可能在C7和C12之间环化,并且在C9处发生酮的区域选择性还原:这些精妙的化学和构象变化是如何被控制的尚不清楚。在这里,我们进行蛋白质 - 蛋白质对接、蛋白质核磁共振和广泛的分子动力学模拟,以揭示ACP和KR之间可能的结合模式;我们获得并分析了KR活性位点内C7 - C12环化八酮的详细模型;并且我们通过关键酮还原步骤的多尺度(QM/MM)反应模拟证实了该模型。分子动力学模拟表明,热力学上最稳定的环化八酮异构体(7,12)也产生了酮还原反应能力最强的构象。随后的反应模拟表明,酮还原具有立体选择性和区域选择性,生成一种 - 醇。我们的模拟进一步表明了几个可能参与C7 - 12环化和C9酮还原选择性的保守残基。在II型PKS中基于ACP的底物呈现方面获得的详细见解有助于设计具有改变的区域或立体选择性的ACP - 酮还原酶系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c56/9088766/f68268807253/au2c00086_0009.jpg

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