生物物理学
膜
去极化
化学
肽
抗菌剂
跨膜蛋白
核糖体蛋白
生物化学
作用机理
抗菌肽
膜电位
溶解
膜蛋白
细胞毒性
跨膜结构域
细菌
细胞生物学
蛋白质-蛋白质相互作用
内吞作用
细胞器
周质间隙
抗菌活性
生物
核糖体RNA
细胞膜
脂质双层
血浆蛋白结合
膜生物物理学
蛋白质结构
生物膜
变构调节
膜透性
结合位点
机制(生物学)
作者
J. Bhatt Mitra,V. K. Sharma,M. Kumar,V. García Sakai,A. Mukherjee
标识
DOI:10.1021/acs.jpclett.6c00518
摘要
Ribosomal protein S30 (RS30) exhibits potent antimicrobial activity, yet its precise mechanism of action has remained unresolved. Here, we uncover a fundamentally distinct mechanism by which RS30 kills bacteria through lipocentric, non-pore-forming membrane depolarization. By integrating microbiological assays, thermodynamic measurements, and quasielastic neutron scattering, we demonstrate that RS30 selectively binds anionic, bacterial-mimetic membranes via electrostatic interactions and markedly suppresses lipid lateral diffusion. This restriction of membrane mobility may promote lipid rearrangements that generate transient defects sufficient to collapse the membrane potential without large-scale permeabilization. The striking dissociation between depolarization and lysis implies a lipocentric mechanism centered on modulation of membrane dynamics rather than peptide oligomerization or stable transmembrane pore formation. Importantly, RS30 exhibits negligible cytotoxicity toward mammalian cells, highlighting its exceptional selectivity. These findings identify RS30 as a nonlytic antimicrobial agent and provide a strategic framework for next-generation therapeutics and precision infection-imaging probes.
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