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A peptidomimetic antibiotic targets outer membrane proteins and disrupts selectively the outer membrane in Escherichia coli

机译:拟肽抗生素靶向外膜蛋白并选择性破坏大肠杆菌中的外膜

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摘要

Increasing antibacterial resistance presents a major challenge in antibiotic discovery. One attractive target in Gram-negative bacteria is the unique asymmetric outer membrane (OM), which acts as a permeability barrier that protects the cell from external stresses such as the presence of antibiotics. We describe a novel β-hairpin macrocyclic peptide JB-95 with potent antimicrobial activity against E. coli. This peptide exhibits no cellular lytic activity, but electron microscopy and fluorescence studies reveal an ability to selectively disrupt the OM but not the inner membrane of E. coli. The selective targeting of the OM likely occurs through interactions of JB-95 with selected β-barrel OM proteins including BamA and LptD as shown by photolabeling experiments. Membrane proteomic studies reveal rapid depletion of many β-barrel OM proteins from JB-95-treated E. coli, consistent with induction of a membrane stress response and/or direct inhibition of the Bam folding machine. The results suggest that lethal disruption of the OM by JB-95 occurs through a novel mechanism of action at key interaction sites within clusters of β-barrel proteins in the OM. These findings open new avenues for developing antibiotics that specifically target β-barrel proteins and the integrity of the Gram-negative OM.
机译:增强的抗药性是发现抗生素的主要挑战。革兰氏阴性细菌的一个有吸引力的靶标是独特的不对称外膜(OM),它可作为通透性屏障,保护细胞免受外界压力(例如存在抗生素)的侵害。我们描述了一种新型的β-发夹大环肽JB-95,具有针对大肠杆菌的强效抗菌活性。该肽不具有细胞裂解活性,但是电子显微镜和荧光研究显示了选择性破坏OM的能力,但没有破坏大肠杆菌内膜的能力。如通过光标记实验所示,通过JB-95与包括BamA和LptD在内的选定的β-桶形OM蛋白相互作用,可以对OM进行选择性靶向。膜蛋白质组学研究表明,JB-95处理的大肠杆菌中许多β-桶OM蛋白迅速耗竭,这与诱导膜应力反应和/或直接抑制Bam折叠机一致。结果表明,JB-95对OM的致死性破坏是通过在OM中β桶蛋白簇内关键相互作用位点的新作用机制发生的。这些发现为开发专门针对β-桶蛋白和革兰氏阴性OM的完整性的抗生素开辟了新途径。

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