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Structure-based analysis of the molecular interactions between acyltransferase and acyl carrier protein in vicenistatin biosynthesis

机译:抑菌素生物合成中酰基转移酶和酰基载体蛋白之间分子相互作用的基于结构的分析

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摘要

Acyltransferases (ATs) are key determinants of building block specificity in polyketide biosynthesis. Despite the importance of protein–protein interactions between AT and acyl carrier protein (ACP) during the acyltransfer reaction, the mechanism of ACP recognition by AT is not understood in detail. Herein, we report the crystal structure of AT VinK, which transfers a dipeptide group between two ACPs, VinL and VinP1LdACP, in vicenistatin biosynthesis. The isolated VinK structure showed a unique substrate-binding pocket for the dipeptide group linked to ACP. To gain greater insight into the mechanism of ACP recognition, we attempted to crystallize the VinK–ACP complexes. Because transient enzyme–ACP complexes are difficult to crystallize, we developed a covalent cross-linking strategy using a bifunctional maleimide reagent to trap the VinK–ACP complexes, allowing the determination of the crystal structure of the VinK–VinL complex. In the complex structure, Arg-153, Met-206, and Arg-299 of VinK interact with the negatively charged helix II region of VinL. The VinK–VinL complex structure allows, to our knowledge, the first visualization of the interaction between AT and ACP and provides detailed mechanistic insights into ACP recognition by AT.
机译:酰基转移酶(ATs)是聚酮化合物生物合成中构件特异性的关键决定因素。尽管在酰基转移反应过程中AT与酰基载体蛋白(ACP)之间的蛋白质间相互作用很重要,但AT识别ACP的机制尚不十分清楚。在本文中,我们报道了AT VinK的晶体结构,该蛋白在反维斯他汀生物合成中在两个ACP(VinL和VinP1LdACP)之间转移了一个二肽基团。分离的VinK结构显示了与ACP连接的二肽基团的独特底物结合口袋。为了更深入地了解ACP识别机制,我们尝试使VinK-ACP复合物结晶。由于瞬时酶-ACP复合物很难结晶,我们开发了一种共价交联策略,使用双功能马来酰亚胺试剂捕获VinK-ACP复合物,从而可以确定VinK-VinL复合物的晶体结构。在复杂的结构中,VinK的Arg-153,Met-206和Arg-299与VinL的带负电荷的螺旋II区相互作用。据我们所知,VinK–VinL复杂的结构允许对AT和ACP之间的交互进行第一个可视化,并为AT识别ACP提供了详细的机械见解。

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