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Imaging peptidoglycan biosynthesis in Bacillus subtilis with fluorescent antibiotics

机译:用荧光抗生素成像枯草芽孢杆菌中的肽聚糖生物合成

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The peptidoglycan (PG) layers surrounding bacterial cells play an important role in determining cell shape. The machinery controlling when and where new PG is made is not understood, but is proposed to involve interactions between bacterial actin homologs such as Mbl, which forms helical cables within cells, and extracellular multiprotein complexes that include penicillin-binding proteins. It has been suggested that labeled antibiotics that bind to PG precursors may be useful for imaging PG to help determine the genes that control the biosynthesis of this polymer. Here, we compare the staining patterns observed in Bacillus subtilis using fluorescent derivatives of two PG-binding antibiotics, vancomycin and ramoplanin. The staining patterns for both probes exhibit a strong dependence on probe concentration, suggesting antibiotic-induced perturbations in PG synthesis. Ramoplanin probes may be better imaging agents than vancomycin probes because they yield clear staining patterns at concentrations well below their minimum inhibitory concentrations. Under some conditions, both ramoplanin and vancomycin probes produce helicoid staining patterns along the cylindrical walls of B. subtilis cells. This sidewall staining is observed in the absence of the cytoskeletal protein Mbl. Although Mbl plays an important role in cell shape determination, our data indicate that other proteins control the spatial localization of the biosynthetic complexes responsible for new PG synthesis along the walls of B. subtilis cells.
机译:细菌细胞周围的肽聚糖(PG)层在确定细胞形状中起重要作用。目前尚不清楚控制何时何地制造新的PG的机制,但提出该机制涉及细菌肌动蛋白同系物如Mbl(其在细胞内形成螺旋形电缆)与包括青霉素结合蛋白的细胞外多蛋白复合物之间的相互作用。已经提出,结合PG前体的标记抗生素可用于使PG成像以帮助确定控制该聚合物的生物合成的基因。在这里,我们比较了使用两种PG结合抗生素万古霉素和雷莫拉宁的荧光衍生物在枯草芽孢杆菌中观察到的染色模式。两种探针的染色模式都表现出对探针浓度的强烈依赖性,表明在PG合成中抗生素诱导的扰动。雷莫普林探针比万古霉素探针可能是更好的显像剂,因为它们在远低于其最小抑制浓度的浓度下会产生清晰的染色模式。在某些条件下,雷莫拉宁探针和万古霉素探针都沿枯草芽孢杆菌细胞的圆柱壁产生螺旋状染色模式。在不存在细胞骨架蛋白Mbl的情况下观察到该侧壁染色。尽管Mbl在细胞形状确定中起着重要作用,但我们的数据表明,其他蛋白质控制着负责枯草芽孢杆菌细胞壁新PG合成的生物合成复合物的空间定位。

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