Matsuoka Satoshi, Chiba Minako, Tanimura Yu, Hashimoto Michihiro, Hara Hiroshi, Matsumoto Kouji
Department of Biochemistry and Molecular Biology, Graduate School of Science and Engineering, Saitama University, Saitama, Japan.
Genes Genet Syst. 2011;86(5):295-304. doi: 10.1266/ggs.86.295.
Bacillus subtilis Marburg 168 cells with disrupted ugtP, which encodes UDP-glucosyltransferase involved in glucolipid synthesis, were bent and distended. In the ugtP mutant cells, the extracytoplasmic function sigmas SigM, SigV and SigX, were found to be activated. Introduction of a disrupted allele of sigM into the ugtP strain caused even more abnormal morphology, with cells taking on a balloon-like shape; growth of these cells in LB medium was hampered by addition of 1.5% NaCl. Addition of MgSO4 or MnCl2 suppressed the abnormal morphology. In ugtP mutant cells the transcription of the mreB operon from an upstream promoter in maf (designated Pupstream mreB) and PmreBH was 4.3- and 2.3-fold higher, respectively, and localization of GFP-MreB was not in discrete dots (in an apparently helical pattern), but faint and in irregular clusters. GFP-MreB protein was reduced in the ugtP mutant cells. We suggest that glucolipids are important for MreB isoforms to take on the configuration that appears as discrete dots and plays a role in shaping cells into straight rods.
编码参与糖脂合成的UDP - 葡萄糖基转移酶的枯草芽孢杆菌马尔堡168菌株的ugtP基因被破坏后,细胞出现弯曲和膨胀。在ugtP突变体细胞中,发现胞外功能σ因子SigM、SigV和SigX被激活。将sigM的破坏等位基因导入ugtP菌株会导致更异常的形态,细胞呈现气球状;在LB培养基中添加1.5% NaCl会阻碍这些细胞的生长。添加MgSO4或MnCl2可抑制异常形态。在ugtP突变体细胞中,maf中上游启动子(称为上游mreB)和PmreBH对mreB操纵子的转录分别高出4.3倍和2.3倍,并且GFP - MreB的定位不是呈离散的点(呈明显的螺旋模式),而是微弱且呈不规则簇状。ugtP突变体细胞中的GFP - MreB蛋白减少。我们认为糖脂对于MreB异构体呈现离散点的构型很重要,并且在将细胞塑造为直杆状中发挥作用。