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Insights into the regulation of bacteriophage endolysin: multiple means to the same end

机译:洞察噬菌体内溶素的调控:达到同一目的的多种手段

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Antibiotics are the molecules of choice to treat bacterial infections. However, because of the rapid emergence of drug-resistant bacteria, alternative modes of combating infections are being envisaged. Bacteriophages, which infect and lyse bacterial cells, may function as effective antimicrobial agents. Most bacteriophages produce their own peptidoglycan hydrolase called endolysin or lysin, which breaks down the cell wall of bacteria and aids in the release of newly assembled virions. Here, we discuss several findings that help us in understanding how endolysins are regulated. We observe that there is no common mechanism that is followed in all cases. Many different modes of activity regulation have been observed in endolysins, including regulation of protein expression, translocation across the cell membrane and post-translational modifications. These processes not only demonstrate how endolysins are made dependent on other accessory proteins and non-protein factors for their synthesis, translocation across the cytoplasmic membrane and activity, but also show how autoregulation helps in maintaining the enzyme in an inactive form. Various regulatory mechanisms that are discussed are particularly applicable to endolysins. Nevertheless, a detailed study of these methods opens new avenues of investigation in the area of protein translocation systems and the novel ways of enzyme activation and regulation in bacteria.
机译:抗生素是治疗细菌感染的首选分子。然而,由于耐药细菌的迅速出现,正在设想出对抗感染的替代方式。感染并裂解细菌细胞的噬菌体可作为有效的抗菌剂。大多数噬菌体会产生自己的肽聚糖水解酶,称为内溶素或溶素,可分解细菌的细胞壁并帮助释放新组装的病毒体。在这里,我们讨论了一些发现,这些发现有助于我们理解细胞内溶素的调控方式。我们观察到在所有情况下都没有遵循通用机制。在内溶素中已观察到许多不同的活性调节模式,包括调节蛋白表达,跨细胞膜转运和翻译后修饰。这些过程不仅证明了如何使溶血素的合成,其他穿过细胞质膜的转运和活性依赖于其他辅助蛋白质和非蛋白质因素,而且还显示了自动调节如何帮助维持酶的非活性形式。讨论的各种调节机制特别适用于内溶素。然而,对这些方法的详细研究为蛋白质转运系统以及细菌中酶激活和调控的新方法开辟了新的研究途径。

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