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链霉菌属色杆菌中双组分系统传感器激酶 VanS 的细胞外结构域与万古霉素结合于一个新鉴定的结合位点。

The Extracellular Domain of Two-component System Sensor Kinase VanS from Streptomyces coelicolor Binds Vancomycin at a Newly Identified Binding Site.

机构信息

MOAC Doctoral Training Centre, University of Warwick, Coventry, CV4 7AL, UK.

Medical Research Council Doctoral Training Centre, University of Warwick, Coventry, CV4 7AL, UK.

出版信息

Sci Rep. 2020 Mar 31;10(1):5727. doi: 10.1038/s41598-020-62557-z.

Abstract

The glycopeptide antibiotic vancomycin has been widely used to treat infections of Gram-positive bacteria including Clostridium difficile and methicillin-resistant Staphylococcus aureus. However, since its introduction, high level vancomycin resistance has emerged. The genes responsible require the action of the two-component regulatory system VanSR to induce expression of resistance genes. The mechanism of detection of vancomycin by this two-component system has yet to be elucidated. Diverging evidence in the literature supports activation models in which the VanS protein binds either vancomycin, or Lipid II, to induce resistance. Here we investigated the interaction between vancomycin and VanS from Streptomyces coelicolor (VanS), a model Actinomycete. We demonstrate a direct interaction between vancomycin and purified VanS, and traced these interactions to the extracellular region of the protein, which we reveal adopts a predominantly α-helical conformation. The VanS-binding epitope within vancomycin was mapped to the N-terminus of the peptide chain, distinct from the binding site for Lipid II. In targeting a separate site on vancomycin, the effective VanS ligand concentration includes both free and lipid-bound molecules, facilitating VanS activation. This is the first molecular description of the VanS binding site within vancomycin, and could direct engineering of future therapeutics.

摘要

糖肽类抗生素万古霉素被广泛用于治疗包括艰难梭菌和耐甲氧西林金黄色葡萄球菌在内的革兰氏阳性菌感染。然而,自从它被引入以来,高水平的万古霉素耐药性已经出现。负责的基因需要双组分调节系统 VanSR 的作用来诱导耐药基因的表达。该双组分系统检测万古霉素的机制尚未阐明。文献中的分歧证据支持激活模型,其中 VanS 蛋白结合万古霉素或脂质 II 以诱导耐药性。在这里,我们研究了链霉菌(VanS)中万古霉素和 VanS 之间的相互作用,链霉菌是一种模式放线菌。我们证明了万古霉素和纯化的 VanS 之间存在直接相互作用,并将这些相互作用追溯到蛋白质的细胞外区域,我们揭示该区域采用主要的α-螺旋构象。万古霉素中的 VanS 结合表位映射到肽链的 N 端,与脂质 II 的结合位点不同。在靶向万古霉素的另一个位点时,有效 VanS 配体浓度包括游离和脂结合分子,从而促进 VanS 激活。这是万古霉素中 VanS 结合位点的第一个分子描述,并且可以指导未来治疗药物的设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/843d/7109055/3d277b053fc1/41598_2020_62557_Fig1_HTML.jpg

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