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首页> 外文期刊>Journal of Molecular Biology >Docking on Lipid II-A Widespread Mechanism for Potent Bactericidal Activities of Antibiotic Peptides
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Docking on Lipid II-A Widespread Mechanism for Potent Bactericidal Activities of Antibiotic Peptides

机译:对接对脂质II的应用抗生素肽有效杀菌活性的广泛机制

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Natural product antibiotics usually target the major biosynthetic pathways of bacterial cells and the search for new targets outside these pathways has proven very difficult. Cell wall biosynthesis maybe the most prominent antibiotic target, and beta-lactams are among the clinically most relevant antibiotics. Among cell wall biosynthesis inhibitors, glycopeptide antibiotics are a second group of important drugs, which bind to the peptidoglycan building block lipid II and prevent the incorporation of the monomeric unit into polymeric cell wall. However, lipid II acts as a docking molecule for many more naturally occurring antibiotics from diverse chemical classes and likely is the most targeted molecule in antibacterial mechanisms. We summarize current knowledge on lipid II binding antibiotics and explain, on the levels of mechanisms and resistance development, why lipid II is such a prominent target, and thus provide insights for the design of new antibiotic drugs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:天然产品抗生素通常靶向细菌细胞的主要生物合成途径,并在这些途径之外的新目标的搜索已经证明非常困难。细胞壁生物合成可能是最突出的抗生素靶,β-内酰胺是临床上最相关的抗生素中的。在细胞壁生物合成抑制剂中,糖肽抗生素是第二组重要药物,其与肽聚糖组块脂质II结合并防止单体单元将单体单元掺入聚合物细胞壁中。然而,Lipid II用作来自不同化学类别的许多天然存在的抗生素的对接分子,并且可能是抗菌机制中最具靶向的分子。我们总结了目前对脂质II结合抗生素的目前的知识,并解释了机制和抗性发展水平,为什么Lipid II是如此突出的目标,因此为新的抗生素药物设计提供了见解。 (c)2019 Elsevier Ltd.保留所有权利。

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