Microbial Genetics Laboratory, Genetic Strains Research Center, National Institute of Genetics, Sokendai, 1111 Yata, Mishima, Shizuoka, 411-8540, Japan.
Microbiologyopen. 2013 Oct;2(5):798-810. doi: 10.1002/mbo3.116. Epub 2013 Aug 6.
RodZ is important for maintaining the rod shape of Escherichia coli. Loss of RodZ causes conversion of the rod shape to a round shape and a growth rate slower than that of wild-type cells. Suppressor mutations that simultaneously restore both the growth rates and the rod shape were isolated. Most of the suppressor mutations are found in mreB, mrdA, or mrdB. One of the mutations was in the promoter region of zipA, which encodes a crucial component of the cell division machinery. In this study, we investigated the mechanism of the suppression by this mutation. ZipA was slightly but significantly increased in the suppressor cells and led to a delay in cell division. While round-shaped mreB and mrdA mutants lose cell bipolarity, we found that round-shaped rodZ mutants retained cell bipolarity. Therefore, we concluded that a delay in the completion of septation provides extra time to elongate the cell laterally so that the zipA suppressor mutant is able to recover its ovoid or rod shape. The suppression by zipA demonstrates that the regulation of timing of septation potentially contributes to the conversion of morphology in bacterial cells.
RodZ 对于维持大肠杆菌的杆状形态非常重要。RodZ 的缺失会导致杆状形态向圆形转化,并且生长速度比野生型细胞慢。分离出了同时恢复生长速度和杆状形态的抑制突变。大多数抑制突变发生在 mreB、mrdA 或 mrdB 中。一个突变发生在编码细胞分裂机制关键组成部分的 zipA 的启动子区域。在这项研究中,我们研究了这种突变的抑制机制。在抑制细胞中,ZipA 略有但显著增加,导致细胞分裂延迟。虽然圆形的 mreB 和 mrdA 突变体失去了细胞的两极性,但我们发现圆形的 rodZ 突变体保留了细胞的两极性。因此,我们得出结论,胞质分裂完成的延迟为细胞侧向伸长提供了额外的时间,从而使 zipA 抑制突变体能够恢复其椭圆形或杆状形态。ZipA 的抑制作用表明,胞质分裂时间的调节可能有助于细菌细胞形态的转换。