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Illumination of growth, division and secretion by metabolic labeling of the bacterial cell surface

机译:细菌细胞表面代谢标记的生长,分裂和分泌的照射

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The cell surface is the essential interface between a bacterium and its surroundings. Composed primarily of molecules that are not directly genetically encoded, this highly dynamic structure accommodates the basic cellular processes of growth and division as well as the transport of molecules between the cytoplasm and the extracellular milieu. In this review, we describe aspects of bacterial growth, division and secretion that have recently been uncovered by metabolic labeling of the cell envelope. Metabolite derivatives can be used to label a variety of macromolecules, from proteins to non-genetically-encoded glycans and lipids. The embedded metabolite enables precise tracking in time and space, and the versatility of newer chemoselective detection methods offers the ability to execute multiple experiments concurrently. In addition to reviewing the discoveries enabled by metabolic labeling of the bacterial cell envelope, we also discuss the potential of these techniques for translational applications. Finally, we offer some guidelines for implementing this emerging technology.
机译:细胞表面是细菌和周围环境之间的基本界面。主要由不直接遗传编码的分子组成,这种高度动态的结构适用于生长和划分的基本细胞过程以及细胞质和细胞外环境之间的分子的运输。在本文中,我们描述了最近被细胞包膜的代谢标记揭示的细菌生长,分裂和分泌的方面。代谢物衍生物可用于标记各种大分子,从蛋白质到非遗传编码的聚糖和脂质。嵌入式代谢物能够在时间和空间中精确跟踪,更新的化学选择性检测方法的多功能性提供了同时执行多个实验的能力。除了审查由细菌封套的代谢标记启用的发现外,我们还讨论了这些技术用于翻译应用的潜力。最后,我们提供了一些实施该新兴技术的指导方针。

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