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首页> 外文期刊>MedChemComm >Inhibitors of bacterial tubulin target bacterial membranes in vivo?
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Inhibitors of bacterial tubulin target bacterial membranes in vivo?

机译:细菌微管蛋白抑制剂在体内靶向细菌膜?

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FtsZ is a homolog of eukaryotic tubulin that is widely conserved among bacteria and coordinates the assembly of the cell division machinery. FtsZ plays a central role in cell replication and is a target of interest for antibiotic development. Several FtsZ inhibitors have been reported. We characterized the mechanism of these compounds in bacteria and found that many of them disrupt the localization of membrane-associated proteins, including FtsZ, by reducing the transmembrane potential or perturbing membrane permeability. We tested whether the reported phenotypes of a broad collection of FtsZ inhibitors disrupt the transmembrane potential in Bacillus subtilis strain 168. Using a combination of flow cytometry and microscopy, we found that zantrin Z1, cinnamaldehyde, totarol, sanguinarine, and viriditoxin decreased the B. subtilis transmembrane potential or perturbed membrane permeability, and influenced the localization of the membrane-associated, division protein MinD. These studies demonstrate that small molecules that disrupt membrane function in bacterial cells produce phenotypes that are similar to the inhibition of proteins associated with membranes in vivo, including bacterial cytoskeleton homologs, such as FtsZ. The results provide a new dimension for consideration in the design and testing of inhibitors of bacterial targets that are membrane-associated and provide additional insight into the structural characteristics of antibiotics that disrupt the membrane.
机译:FtsZ是真核微管蛋白的同源物,在细菌中广泛保守,并协调细胞分裂机制的装配。 FtsZ在细胞复制中起着核心作用,是抗生素开发的关注目标。已经报道了几种FtsZ抑制剂。我们表征了这些化合物在细菌中的机制,发现其中许多化合物通过降低跨膜电位或干扰膜通透性,破坏了包括FtsZ在内的膜相关蛋白的定位。我们测试了广泛报道的FtsZ抑制剂表型是否破坏了枯草芽孢杆菌菌株168的跨膜潜能。使用流式细胞仪和显微镜技术的结合,我们发现zantrin Z1,肉桂醛,totarol,sanguinarine和viriditoxin降低了B。枯草杆菌的跨膜电位或扰动的膜通透性,并影响与膜相关的分裂蛋白MinD的定位。这些研究表明破坏细菌细胞膜功能的小分子产生的表型类似于体内与膜相关蛋白的抑制作用,包括细菌细胞骨架同源物,如FtsZ。该结果为膜相关细菌靶标抑制剂的设计和测试提供了一个新的考虑因素,并为破坏膜的抗生素的结构特征提供了更多见解。

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