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An Activity-Based Probe for Studying Crosslinking in Live Bacteria

机译:研究活菌交联的基于活动的探针

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Penicillin-binding proteins (PBPs) catalyze the crosslinking of peptidoglycan (PG), an essential process for bacterial growth and survival, and a common antibiotic target. Yet, despite its importance, little is known about the spatiotemporal aspects of crosslinkinglargely because of a lack of experimental tools for studying the reaction in live bacteria. Here we introduce such a tool: an activity-based probe that enables visualization and relative quantitation of crosslinking in vivo. In Staphylococcus aureus, we show that fluorescent mimics of the natural substrate of PBPs (PG stem peptide) are covalently incorporated into the cell wall, installing fluorophores in place of natural crosslinks. These fluorescent stem peptide mimics (FSPMs) are selectively recognized by a single PBP in S. aureus: PBP4. Thus, we were able to use FSPM pulse-labeling to localize PBP4 activity in live cells, showing that it is recruited to the septum in a manner dependent on wall teichoic acid.
机译:青霉素结合蛋白(PBPs)催化肽聚糖(PG)的交联,这是细菌生长和存活的必不可少的过程,也是常见的抗生素靶标。然而,尽管它很重要,但由于缺乏研究活细菌中反应的实验工具,人们对交联的时空方面知之甚少。在这里,我们介绍了这样一种工具:一种基于活动的探针,可实现体内交联的可视化和相对定量。在金黄色葡萄球菌中,我们显示PBPs(PG干肽)天然底物的荧光模拟物被共价掺入细胞壁,安装荧光团代替天然交联键。这些荧光干肽模拟物(FSPM)被金黄色葡萄球菌中的单个PBP选择性识别:PBP4。因此,我们能够使用FSPM脉冲标记来定位活细胞中的PBP4活性,表明它以依赖于壁壁chochochoic酸的方式被募集到隔垫。

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