Mizushima T, Koyanagi R, Suzuki E, Tomura A, Kutsukake K, Miki T, Sekimizu K
Department of Microbiology, Faculty of Pharmaceutical Sciences, Kyushu University, Fukuoka, Japan.
Biochim Biophys Acta. 1995 Dec 14;1245(3):397-401. doi: 10.1016/0304-4165(95)00114-x.
We reported elsewhere that mutation in the pgsA gene, responsible for the synthesis of phosphatidylglycerol, repressed the synthesis of flagellin and caused the loss of motility of Escherichia coli (Tomura et al., FEBS Letters 329, 287-290, 1993). We now describe evidence for a decrease in promoter activity of the flhD gene, a master gene for flagellum synthesis, in the pgsA3 mutant. We constructed a plasmid with a promoter region of the flhD gene connected with the structure region of the lacZ gene. The activity of beta-galactosidase in the extract prepared from the pgsA3 mutant harboring the fusion plasmid was 30% of that in the wild type cells. This result means that phosphatidylglycerol is likely to be required for the initiation of transcription of the flhD gene. We also found that the motility-less phenotype of the mutant was partially suppressed by elevating incubation temperature. This suppression is caused by restoration of transcription of the flhD gene by high temperature. As the content of phosphatidylglycerol did not increase by elevating incubation temperature, we proposed that this suppression is caused by alternation of a physical structure of phospholipid bilayers in cytoplasmic membranes.
我们在其他地方报道过,负责磷脂酰甘油合成的pgsA基因发生突变会抑制鞭毛蛋白的合成,并导致大肠杆菌失去运动性(Tomura等人,《欧洲生物化学学会联合会快报》329, 287 - 290, 1993)。我们现在描述pgsA3突变体中鞭毛合成主基因flhD基因启动子活性降低的证据。我们构建了一个质粒,其flhD基因的启动子区域与lacZ基因的结构区域相连。从携带融合质粒的pgsA3突变体中制备的提取物中β-半乳糖苷酶的活性是野生型细胞中的30%。这一结果意味着磷脂酰甘油可能是flhD基因转录起始所必需的。我们还发现,通过提高培养温度,突变体的无运动性表型得到了部分抑制。这种抑制是由高温恢复flhD基因的转录引起的。由于提高培养温度并没有增加磷脂酰甘油的含量,我们推测这种抑制是由细胞质膜中磷脂双层物理结构的改变引起的。