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抗菌大环肽揭示了一种独特的BamA抑制模式。

Antibacterial macrocyclic peptides reveal a distinct mode of BamA inhibition.

作者信息

Walker Morgan E, Zhu Wei, Peterson Janine H, Wang Hao, Patteson Jon, Soriano Aileen, Zhang Han, Mayhood Todd, Hou Yan, Mesbahi-Vasey Samaneh, Gu Meigang, Frost John, Lu Jun, Johnston Jennifer, Hipolito Christopher, Lin Songnian, Painter Ronald E, Klein Daniel, Walji Abbas, Weinglass Adam, Kelly Terri M, Saldanha Adrian, Schubert Jeffrey, Bernstein Harris D, Walker Scott S

机构信息

Merck & Co., Inc., West Point, PA, USA.

Merck & Co., Inc., Rahway, NJ, USA.

出版信息

Nat Commun. 2025 Apr 10;16(1):3395. doi: 10.1038/s41467-025-58086-w.

Abstract

Outer membrane proteins (OMPs) produced by Gram-negative bacteria contain a cylindrical amphipathic β-sheet ("β-barrel") that functions as a membrane spanning domain. The assembly (folding and membrane insertion) of OMPs is mediated by the heterooligomeric β-barrel assembly machine (BAM). The central BAM subunit (BamA) is an attractive antibacterial target because its structure and cell surface localization are conserved, it catalyzes an essential reaction, and potent bactericidal compounds that inhibit its activity have been described. Here we utilize mRNA display to discover cyclic peptides that bind to Escherichia coli BamA with high affinity. We describe three peptides that arrest the growth of BAM deficient E. coli strains, inhibit OMP assembly in live cells and in vitro, and bind to unique sites within the BamA β-barrel lumen. Remarkably, we find that if the peptides are added to cultures after a slowly assembling OMP mutant binds to BamA, they accelerate its biogenesis. The data strongly suggest that the peptides trap BamA in conformations that block the initiation of OMP assembly but favor a later assembly step. Molecular dynamics simulations provide further evidence that the peptides bind stably to BamA and function by a previously undescribed mechanism.

摘要

革兰氏阴性菌产生的外膜蛋白(OMPs)含有一个圆柱形两亲性β-折叠片层(“β-桶”),其作为跨膜结构域发挥作用。OMPs的组装(折叠和膜插入)由异源寡聚β-桶组装机器(BAM)介导。核心BAM亚基(BamA)是一个有吸引力的抗菌靶点,因为其结构和细胞表面定位是保守的,它催化一个必需反应,并且已经描述了抑制其活性的强效杀菌化合物。在这里,我们利用mRNA展示技术发现与大肠杆菌BamA具有高亲和力结合的环肽。我们描述了三种肽,它们能阻止BAM缺陷型大肠杆菌菌株的生长,在活细胞和体外抑制OMP组装,并结合到BamAβ-桶腔内的独特位点。值得注意的是,我们发现如果在一个组装缓慢的OMP突变体与BamA结合后将这些肽添加到培养物中,它们会加速其生物发生。数据强烈表明,这些肽将BamA捕获在阻止OMP组装起始但有利于后期组装步骤的构象中。分子动力学模拟提供了进一步的证据,表明这些肽与BamA稳定结合,并通过一种先前未描述的机制发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c1e/11986105/99bead37be52/41467_2025_58086_Fig1_HTML.jpg

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