首页> 外文期刊>Molecular Microbiology >Cell division inhibitors SulA and MinC/MinD block septum formation at different steps in the assembly of the Escherichia coli division machinery.
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Cell division inhibitors SulA and MinC/MinD block septum formation at different steps in the assembly of the Escherichia coli division machinery.

机译:细胞分裂抑制剂SulA和MinC / MinD在大肠埃希氏菌分裂机制组装的不同步骤阻止隔膜的形成。

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SulA and MinCD are specific inhibitors of cell division in Escherichia coli. In this paper, size exclusion chromatography was used to study the effect of the SulA and MinCD division inhibitors on the oligomerization state of endogenous FtsZ in cytoplasmic extracts, and immunofluorescence microscopy was used to determine the effect of SulA and MinCD on the formation of FtsZ, FtsA and ZipA rings at potential division sites. SulA prevented the formation of high-molecular-weight FtsZ polymers by interfering with FtsZ dimerization and subsequent oligomerization. In contrast, the MinCD division inhibitor did not prevent the oligomerization of FtsZ in the cell extracts or the formation of FtsZ and ZipA ring structures in vivo. However, MinCD did prevent the formation of FtsA rings. Increased expression of ftsA suppressed MinCD-induced division inhibition, but had no effect on SulA-induced division inhibition. These results indicate that MinCD blocks the assembly of the septation machinery at a later step than SulA, at the stage at which FtsA is added to the FtsZ ring.
机译:SulA和MinCD是大肠杆菌中细胞分裂的特异性抑制剂。本文使用尺寸排阻色谱法研究SulA和MinCD分裂抑制剂对细胞质提取物中内源性FtsZ寡聚化状态的影响,并使用免疫荧光显微镜确定SulA和MinCD对FtsZ形成的影响, FtsA和ZipA在潜在的分裂位点敲响。 SulA通过干扰FtsZ二聚化和随后的低聚反应来阻止高分子量FtsZ聚合物的形成。相反,MinCD分裂抑制剂并未阻止FtsZ在细胞提取物中的寡聚或体内FtsZ和ZipA环结构的形成。但是,MinCD确实阻止了FtsA环的形成。 ftsA的表达增加抑制了MinCD诱导的分裂抑制,但对SulA诱导的分裂抑制没有影响。这些结果表明,在将FtsA添加到FtsZ环的阶段,MinCD在比SulA晚的步骤阻止了分离系统的组装。

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