Wilkison W O, Bell R M
Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710.
J Biol Chem. 1988 Oct 5;263(28):14505-10.
Overexpression of the Escherichia coli sn-glycerol-3-phosphate (glycerol-P) acyltransferase, an integral membrane protein, causes formation of ordered arrays of the enzyme in vitro. The formation of these tubular structures did not occur in an E. coli strain bearing a mutation in the htpR gene, the regulatory gene for the heat shock response. The htpR165 mutation was shown by genetic analysis to be the lesion responsible for blockage of tubule formation. Similar amounts of glycerol-P acyltransferase were produced in isogenic htpR+ and htpR165 strains, ruling out an effect of htpR165 on expression of glycerol-P acyltransferase. Further, phospholipid metabolism was not altered in either strain after induction of glycerol-P acyltransferase synthesis. Increased glycerol-P acyltransferase synthesis caused a partial induction of the heat shock response which was dependent upon a wild type htpR gene. The heat shock proteins induced were identified as the groEL and dnaK gene products on two-dimensional gels. These two proteins have been implicated in the assembly of bacteriophage coats. These heat shock proteins appear essential for tubule formation.
大肠杆菌sn-甘油-3-磷酸(甘油-P)酰基转移酶是一种整合膜蛋白,其过表达会在体外导致该酶形成有序排列。在热休克反应的调节基因htpR基因发生突变的大肠杆菌菌株中,不会形成这些管状结构。通过遗传分析表明,htpR165突变是导致小管形成受阻的损伤。在同基因的htpR +和htpR165菌株中产生了相似量的甘油-P酰基转移酶,排除了htpR165对甘油-P酰基转移酶表达的影响。此外,在诱导甘油-P酰基转移酶合成后,两种菌株的磷脂代谢均未改变。甘油-P酰基转移酶合成增加导致热休克反应的部分诱导,这依赖于野生型htpR基因。在二维凝胶上,诱导的热休克蛋白被鉴定为groEL和dnaK基因产物。这两种蛋白质与噬菌体外壳的组装有关。这些热休克蛋白似乎对小管形成至关重要。