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与完整细菌肽聚糖复合的细胞壁交联酶的原子模型。

Atomic model of a cell-wall cross-linking enzyme in complex with an intact bacterial peptidoglycan.

作者信息

Schanda Paul, Triboulet Sébastien, Laguri Cédric, Bougault Catherine M, Ayala Isabel, Callon Morgane, Arthur Michel, Simorre Jean-Pierre

机构信息

University Grenoble Alpes, IBS , F-38044 Grenoble, France.

出版信息

J Am Chem Soc. 2014 Dec 24;136(51):17852-60. doi: 10.1021/ja5105987. Epub 2014 Dec 10.

Abstract

The maintenance of bacterial cell shape and integrity is largely attributed to peptidoglycan, a highly cross-linked biopolymer. The transpeptidases that perform this cross-linking are important targets for antibiotics. Despite this biomedical importance, to date no structure of a protein in complex with an intact bacterial peptidoglycan has been resolved, primarily due to the large size and flexibility of peptidoglycan sacculi. Here we use solid-state NMR spectroscopy to derive for the first time an atomic model of an l,d-transpeptidase from Bacillus subtilis bound to its natural substrate, the intact B. subtilis peptidoglycan. Importantly, the model obtained from protein chemical shift perturbation data shows that both domains-the catalytic domain as well as the proposed peptidoglycan recognition domain-are important for the interaction and reveals a novel binding motif that involves residues outside of the classical enzymatic pocket. Experiments on mutants and truncated protein constructs independently confirm the binding site and the implication of both domains. Through measurements of dipolar-coupling derived order parameters of bond motion we show that protein binding reduces the flexibility of peptidoglycan. This first report of an atomic model of a protein-peptidoglycan complex paves the way for the design of new antibiotic drugs targeting l,d-transpeptidases. The strategy developed here can be extended to the study of a large variety of enzymes involved in peptidoglycan morphogenesis.

摘要

细菌细胞形状和完整性的维持很大程度上归因于肽聚糖,一种高度交联的生物聚合物。执行这种交联的转肽酶是抗生素的重要作用靶点。尽管具有这种生物医学重要性,但迄今为止,尚未解析出与完整细菌肽聚糖结合的蛋白质结构,主要是由于肽聚糖囊泡的尺寸大且具有灵活性。在这里,我们使用固态核磁共振光谱首次推导出来自枯草芽孢杆菌的一种l,d-转肽酶与它的天然底物——完整的枯草芽孢杆菌肽聚糖结合的原子模型。重要的是,从蛋白质化学位移扰动数据获得的模型表明,两个结构域——催化结构域以及推测的肽聚糖识别结构域——对于相互作用都很重要,并揭示了一种涉及经典酶口袋之外残基的新型结合基序。对突变体和截短蛋白构建体的实验分别证实了结合位点以及两个结构域的作用。通过测量偶极耦合导出的键运动序参数,我们表明蛋白质结合降低了肽聚糖的灵活性。蛋白质-肽聚糖复合物原子模型的这一首次报道为设计靶向l,d-转肽酶的新型抗生素药物铺平了道路。这里开发的策略可以扩展到对参与肽聚糖形态发生的多种酶的研究。

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