Department of Chemistry, University of Virginia, Charlotesville, Virginia 22904, United States.
ACS Chem Biol. 2020 May 15;15(5):1261-1267. doi: 10.1021/acschembio.0c00002. Epub 2020 Apr 3.
Cell walls are barriers found in almost all known bacterial cells. These structures establish a controlled interface between the external environment and vital cellular components. A primary component of cell wall is a highly cross-linked matrix called peptidoglycan (PG). PG cross-linking, carried out by transglycosylases and transpeptidases, is necessary for proper cell wall assembly. Transpeptidases, targets of β-lactam antibiotics, stitch together two neighboring PG stem peptides (acyl-donor and acyl-acceptor strands). We recently described a novel class of cellular PG probes that were processed exclusively as acyl-donor strands. Herein, we have accessed the other half of the transpeptidase reaction by developing probes that are processed exclusively as acyl-acceptor strands. The critical nature of the cross-bridge on the PG peptide was demonstrated in live bacterial cells, and surprising promiscuity in cross-bridge primary sequence was found in various bacterial species. Additionally, acyl-acceptor probes provided insight into how chemical remodeling of the PG cross-bridge (e.g., amidation) can modulate cross-linking levels, thus establishing a physiological role of PG structural variations. Together, the acyl-donor and -acceptor probes will provide a versatile platform to interrogate PG cross-linking in physiologically relevant settings.
细胞壁几乎存在于所有已知的细菌细胞中。这些结构在外部环境和重要的细胞成分之间建立了一个受控制的界面。细胞壁的主要成分是一种高度交联的基质,称为肽聚糖(PG)。糖基转移酶和转肽酶进行的 PG 交联对于正确的细胞壁组装是必要的。转肽酶是β-内酰胺类抗生素的靶标,将两个相邻的 PG 骨干肽(酰基供体和酰基受体链)缝合在一起。我们最近描述了一类新型的细胞 PG 探针,它们仅作为酰基供体链进行加工。在这里,我们通过开发仅作为酰基受体链进行加工的探针来访问转肽酶反应的另一半。在活细菌细胞中证明了 PG 肽上的交叉桥的关键性质,并且在各种细菌物种中发现了交叉桥一级序列惊人的混杂性。此外,酰基受体探针提供了关于 PG 交叉桥的化学修饰(例如酰胺化)如何调节交联水平的见解,从而确立了 PG 结构变异的生理作用。总之,酰基供体和受体探针将为在生理相关环境中研究 PG 交联提供一个通用的平台。