Shiba K, Ito K, Yura T
J Bacteriol. 1986 Jun;166(3):849-56. doi: 10.1128/jb.166.3.849-856.1986.
We previously reported (Shiba et al., J. Bacteriol. 160:696-701, 1984) the isolation and characterization of the mutation (ssy) that suppresses the protein export defect due to the secY24(Ts) mutation and causes cold-sensitive growth of Escherichia coli. This report describes more systematic isolation of ssy mutations. Among temperature-resistant revertants of the secY24 mutant, 65 mutants were found to be cold sensitive. These cold-sensitive mutations have been classified by genetic mapping. Twenty-two mutations fell into the ssyA class previously described. The remaining mutations were located at five new loci: ssyB at 9.5 min between tsx and lon; ssyD around 3 min; ssyE at 72.5 min near secY; ssyF at 20.5 min within rpsA; and ssyG at 69.0 min near argG. Two predominant classes, ssyA and ssyB, are probably affected in protein synthesis at the elongation step, whereas the ssyF mutant contained an altered form of ribosomal protein S1 (the gene product of rpsA). These cold-sensitive ssy mutations which suppress secY24 may define genes whose function is somehow involved in the secY-dependent protein secretion mechanism. However, the existence of multiple suppressor loci makes it unlikely that all of these genes specify additional components of the export machinery. A delicate balance may exist between the systems for synthesizing and exporting proteins.
我们之前报道过(Shiba等人,《细菌学杂志》160:696 - 701,1984年),分离并鉴定了一种突变(ssy),该突变可抑制由于secY24(Ts)突变导致的蛋白质输出缺陷,并使大肠杆菌出现冷敏感生长现象。本报告描述了ssy突变更系统的分离情况。在secY24突变体的温度抗性回复突变体中,发现65个突变体对冷敏感。这些冷敏感突变已通过遗传定位进行了分类。22个突变属于先前描述的ssyA类。其余突变位于五个新位点:ssyB在tsx和lon之间9.5分钟处;ssyD在大约3分钟处;ssyE在72.5分钟处靠近secY;ssyF在20.5分钟处位于rpsA内;ssyG在69.0分钟处靠近argG。两个主要类别,ssyA和ssyB,可能在延伸步骤的蛋白质合成中受到影响,而ssyF突变体含有一种改变形式的核糖体蛋白S1(rpsA的基因产物)。这些抑制secY24的冷敏感ssy突变可能定义了其功能以某种方式参与secY依赖性蛋白质分泌机制的基因。然而,多个抑制子位点的存在使得不太可能所有这些基因都指定输出机制的其他组件。蛋白质合成和输出系统之间可能存在微妙的平衡。