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产生非核糖体肽多样性的重组事件格局。

The Landscape of Recombination Events That Create Nonribosomal Peptide Diversity.

作者信息

Baunach Martin, Chowdhury Somak, Stallforth Pierre, Dittmann Elke

机构信息

Institute for Biochemistry and Biology, University of Potsdam, Potsdam-Golm, Germany.

Department of Paleobiotechnology, Leibniz Institute for Natural Product Research and Infection Biology - Hans Knöll Institute (HKI), Jena, Germany.

出版信息

Mol Biol Evol. 2021 May 4;38(5):2116-2130. doi: 10.1093/molbev/msab015.

Abstract

Nonribosomal peptides (NRP) are crucial molecular mediators in microbial ecology and provide indispensable drugs. Nevertheless, the evolution of the flexible biosynthetic machineries that correlates with the stunning structural diversity of NRPs is poorly understood. Here, we show that recombination is a key driver in the evolution of bacterial NRP synthetase (NRPS) genes across distant bacterial phyla, which has guided structural diversification in a plethora of NRP families by extensive mixing and matching of biosynthesis genes. The systematic dissection of a large number of individual recombination events did not only unveil a striking plurality in the nature and origin of the exchange units but allowed the deduction of overarching principles that enable the efficient exchange of adenylation (A) domain substrates while keeping the functionality of the dynamic multienzyme complexes. In the majority of cases, recombination events have targeted variable portions of the Acore domains, yet domain interfaces and the flexible Asub domain remained untapped. Our results strongly contradict the widespread assumption that adenylation and condensation (C) domains coevolve and significantly challenge the attributed role of C domains as stringent selectivity filter during NRP synthesis. Moreover, they teach valuable lessons on the choice of natural exchange units in the evolution of NRPS diversity, which may guide future engineering approaches.

摘要

非核糖体肽(NRP)是微生物生态学中的关键分子介质,并提供不可或缺的药物。然而,与NRP惊人的结构多样性相关的灵活生物合成机制的进化却知之甚少。在这里,我们表明重组是跨远距离细菌门类的细菌NRP合成酶(NRPS)基因进化的关键驱动力,它通过生物合成基因的广泛混合和匹配,引导了大量NRP家族的结构多样化。对大量单个重组事件的系统剖析不仅揭示了交换单元的性质和起源中的惊人多样性,还推导出了总体原则,这些原则能够在保持动态多酶复合物功能的同时,有效地交换腺苷化(A)结构域底物。在大多数情况下,重组事件针对的是A核心结构域的可变部分,但结构域界面和灵活的A亚结构域仍未被开发利用。我们的结果强烈反驳了普遍认为的腺苷化和缩合(C)结构域共同进化的假设,并显著挑战了C结构域在NRP合成过程中作为严格选择性过滤器的既定作用。此外,它们为NRPS多样性进化中天然交换单元的选择提供了宝贵的经验教训,这可能会指导未来的工程方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0b5/8097286/d612d5285e7e/msab015f1.jpg

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