Flower A M
Department of Microbiology and Immunology, University of North Dakota School of Medicine and Health Sciences, Grand Forks, North Dakota 58202-9037, USA.
J Bacteriol. 2001 Mar;183(6):2006-12. doi: 10.1128/JB.183.6.2006-2012.2001.
SecG is an auxiliary protein in the Sec-dependent protein export pathway of Escherichia coli. Although the precise function of SecG is unknown, it stimulates translocation activity and has been postulated to enhance the membrane insertion-deinsertion cycle of SecA. Deletion of secG was initially reported to result in a severe export defect and cold sensitivity. Later results demonstrated that both of these phenotypes were strain dependent, and it was proposed that an additional mutation was required for manifestation of the cold-sensitive phenotype. The results presented here demonstrate that the cold-sensitive secG deletion strain also contains a mutation in glpR that causes constitutive expression of the glp regulon. Introduction of both the glpR mutation and the secG deletion into a wild-type strain background produced a cold-sensitive phenotype, confirming the hypothesis that a second mutation (glpR) contributes to the cold-sensitive phenotype of secG deletion strains. It was speculated that the glpR mutation causes an intracellular depletion of glycerol-3-phosphate due to constitutive synthesis of GlpD and subsequent channeling of glycerol-3-phosphate into metabolic pathways. In support of this hypothesis, it was demonstrated that addition of glycerol-3-phosphate to the growth medium ameliorated the cold sensitivity, as did introduction of a glpD mutation. This depletion of glycerol-3-phosphate is predicted to limit phospholipid biosynthesis, causing an imbalance in the levels of membrane phospholipids. It is hypothesized that this state of phospholipid imbalance imparts a dependence on SecG for proper function or stabilization of the translocation apparatus.
SecG是大肠杆菌Sec依赖性蛋白质输出途径中的一种辅助蛋白。尽管SecG的确切功能尚不清楚,但它能刺激转运活性,并被推测可增强SecA的膜插入-去插入循环。最初报道secG缺失会导致严重的输出缺陷和冷敏感性。后来的结果表明,这两种表型都依赖于菌株,并且有人提出冷敏感表型的表现需要额外的突变。本文给出的结果表明,冷敏感的secG缺失菌株在glpR中也存在一个突变,该突变导致glp操纵子的组成型表达。将glpR突变和secG缺失引入野生型菌株背景中产生了冷敏感表型,证实了第二个突变(glpR)导致secG缺失菌株冷敏感表型的假说。据推测,glpR突变由于GlpD的组成型合成以及随后甘油-3-磷酸进入代谢途径,导致细胞内甘油-3-磷酸的消耗。为支持这一假说,研究表明向生长培养基中添加甘油-3-磷酸可改善冷敏感性,引入glpD突变也有同样效果。预计甘油-3-磷酸的这种消耗会限制磷脂生物合成,导致膜磷脂水平失衡。据推测,这种磷脂失衡状态使转运装置的正常功能或稳定依赖于SecG。