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The Membrane Steps of Bacterial Cell Wall Synthesis as Antibiotic Targets

机译:细菌细胞壁合成的膜步骤作为抗生素靶标

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Peptidoglycan is the major component of the cell envelope of virtually all bacteria. It has structural roles and acts as a selective sieve for molecules from the outer environment. Peptidoglycan synthesis is therefore one of the most important biogenesis pathways in bacteria and has been studied extensively over the last twenty years. The pathway starts in the cytoplasm, continues in the cytoplasmic membrane and finishes in the periplasmic space, where the precursor is polymerized into the peptidoglycan layer. A number of proteins involved in this pathway, such as the Mur enzymes and the penicillin binding proteins (PBPs), have been studied and regarded as good targets for antibiotics. The present review focuses on the membrane steps of peptidoglycan synthesis that involve two enzymes, MraY and MurG, the inhibitors of these enzymes and the inhibition mechanisms. We also discuss the challenges of targeting these two cytoplasmic membrane (associated) proteins in bacterial cells and the perspectives on how to overcome the issues.
机译:肽聚糖是几乎所有细菌的细胞包膜的主要成分。它具有结构性作用,并充当来自外部环境的分子的选择性筛子。因此,肽聚糖的合成是细菌中最重要的生物发生途径之一,并且在过去的二十年中已经进行了广泛的研究。该途径在细胞质中开始,在细胞质膜中继续,并在周质空间中完成,在周质空间中,前体聚合成肽聚糖层。已经研究了许多与该途径有关的蛋白质,例如Mur酶和青霉素结合蛋白(PBPs),并将其视为抗生素的良好靶标。目前的审查集中在肽聚糖合成的膜步骤,涉及两个酶,MraY和MurG,这些酶的抑制剂和抑制机制。我们还将讨论在细菌细胞中靶向这两种细胞质膜(相关)蛋白的挑战以及如何克服这些问题的观点。

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