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靶向富含磷脂酰乙醇胺的膜的糖基杀菌剂。

Sugar-based bactericides targeting phosphatidylethanolamine-enriched membranes.

机构信息

Centro de Química e Bioquímica, Faculdade de Ciências, Universidade de Lisboa, Ed. C8, Campo Grande, 1749-016, Lisboa, Portugal.

Centro de Química Estrutural, Faculdade de Ciências, Universidade de Lisboa, 1749-016, Lisboa, Portugal.

出版信息

Nat Commun. 2018 Nov 19;9(1):4857. doi: 10.1038/s41467-018-06488-4.

Abstract

Anthrax is an infectious disease caused by Bacillus anthracis, a bioterrorism agent that develops resistance to clinically used antibiotics. Therefore, alternative mechanisms of action remain a challenge. Herein, we disclose deoxy glycosides responsible for specific carbohydrate-phospholipid interactions, causing phosphatidylethanolamine lamellar-to-inverted hexagonal phase transition and acting over B. anthracis and Bacillus cereus as potent and selective bactericides. Biological studies of the synthesized compound series differing in the anomeric atom, glycone configuration and deoxygenation pattern show that the latter is indeed a key modulator of efficacy and selectivity. Biomolecular simulations show no tendency to pore formation, whereas differential metabolomics and genomics rule out proteins as targets. Complete bacteria cell death in 10 min and cellular envelope disruption corroborate an effect over lipid polymorphism. Biophysical approaches show monolayer and bilayer reorganization with fast and high permeabilizing activity toward phosphatidylethanolamine membranes. Absence of bacterial resistance further supports this mechanism, triggering innovation on membrane-targeting antimicrobials.

摘要

炭疽是一种由炭疽杆菌引起的传染病,炭疽杆菌是一种生物恐怖主义制剂,会对临床上使用的抗生素产生耐药性。因此,寻找替代作用机制仍然是一个挑战。在此,我们揭示了负责特定糖脂相互作用的脱氧糖苷,导致磷脂酰乙醇胺层状到反相六方相转变,并作为有效的和选择性的杀细菌剂作用于炭疽杆菌和蜡状芽孢杆菌。对在糖苷原子、糖构型和脱氧模式上有所不同的合成化合物系列进行的生物学研究表明,后者确实是功效和选择性的关键调节剂。生物分子模拟显示没有形成孔的趋势,而差异代谢组学和基因组学排除了蛋白质作为靶标。10 分钟内完全杀死细菌细胞并破坏细胞膜,证实了对脂质多态性的作用。没有细菌耐药性进一步支持这种机制,为靶向细胞膜的抗菌药物的创新提供了支持。

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