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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Structural dynamics of the cell wall precursor lipid II in the presence and absence of the lantibiotic nisin
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Structural dynamics of the cell wall precursor lipid II in the presence and absence of the lantibiotic nisin

机译:在存在和不存在羊毛硫抗生素乳链菌肽的情况下细胞壁前体脂质II的结构动力学

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Representing a physiological "Achilles' heel", the cell wall precursor lipid II (LII) is a prime target for various classes of antibiotics. Over the years LII-binding agents have been recognized as promising candidates and templates in the search for new antibacterial compounds to complement or replace existing drugs. To elucidate the molecular structural basis underlying LII functional mechanism and to better understand if and how lantibiotic binding alters the molecular behavior of LII, we performed molecular dynamics (MD) simulations of phospholipid membrane-embedded LII in the absence and presence of the LII-binding lantibiotic nisin. In a series of 2 × 4 independent, unbiased 100 ns MD simulations we sampled the conformational dynamics of nine LII as well as nine LII-nisin complexes embedded in an aqueous 150 mM NaCl/POPC phospholipid membrane environment. We found that nisin binding to LII induces a reduction of LII mobility and flexibility, an outward shift of the LII pentapeptide, an inward movement of the LII disaccharide section, and an overall deeper insertion of the LII tail group into the membrane. The latter effect might indicate an initial step in adopting a stabilizing, scaffold-like structure in the process of nisin-induced membrane leakage. At the same time nisin conformation and LII interaction remain similar to the 1WCO LII-nisin NMR solution structure.
机译:代表生理学的“致命弱点”,细胞壁前体脂质II(LII)是各种抗生素的主要靶标。多年来,LII结合剂已被公认为是寻找新的抗菌化合物以补充或替代现有药物的有希望的候选者和模板。为了阐明LII功能机制的分子结构基础,并更好地了解羊毛硫抗生素结合是否以及如何改变LII的分子行为,我们在不存在和存在LII结合的情况下对磷脂膜包埋的LII进行了分子动力学(MD)模拟羊毛硫抗生素乳链菌肽。在一系列2×4独立,无偏的100 ns MD模拟中,我们采样了嵌入在150 mM NaCl / POPC磷脂膜水溶液中的9种LII以及9种LII-乳链菌肽复合物的构象动力学。我们发现,乳链菌肽结合LII会导致LII流动性和柔韧性降低,LII五肽向外移动,LII二糖部分向内移动以及LII尾基整体更深地插入膜中。后一种效应可能表明在乳链菌肽诱导的膜渗漏过程中采用稳定的,类似支架的结构的第一步。同时,乳链菌肽的构象和LII相互作用保持类似于1WCO LII-乳链菌肽NMR溶液的结构。

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