Zhou Y N, Kusukawa N, Erickson J W, Gross C A, Yura T
Department of Bacteriology, University of Wisconsin, Madison 53706.
J Bacteriol. 1988 Aug;170(8):3640-9. doi: 10.1128/jb.170.8.3640-3649.1988.
The product of the Escherichia coli rpoH (htpR) gene, sigma 32, is required for heat-inducible transcription of the heat shock genes. Previous studies on the role of sigma 32 in growth at low temperature and in gene expression involved the use of nonsense and missense rpoH mutations and have led to ambiguous or conflicting results. To clarify the role of sigma 32 in cell physiology, we have constructed loss-of-function insertion and deletion mutations in rpoH. Strains lacking sigma 32 are extremely temperature sensitive and grow only at temperatures less than or equal to 20 degrees C. There is no transcription from the heat shock promoters preceding the htpG gene or the groESL and dnaKJ operons; however, several heat shock proteins are produced in the mutants. GroEL protein is present in the rpoH null mutants, but its synthesis is not inducible by a shift to high temperature. The low-level synthesis of GroEL results from transcription initiation at a minor sigma 70-controlled promoter for the groE operon. DnaK protein synthesis cannot be detected at low temperature, but can be detected after a shift to 42 degrees C. The mechanism of this heat-inducible synthesis is not known. We conclude that sigma 32 is required for cell growth at temperatures above 20 degrees C and is required for transcription from the heat shock promoters. Several heat shock proteins are synthesized in the absence of sigma 32, indicating that there are additional mechanisms controlling the synthesis of some heat shock proteins.
大肠杆菌rpoH(htpR)基因的产物σ32,是热休克基因热诱导转录所必需的。先前关于σ32在低温生长和基因表达中作用的研究涉及使用rpoH的无义突变和错义突变,结果含糊不清或相互矛盾。为了阐明σ32在细胞生理学中的作用,我们构建了rpoH的功能缺失插入和缺失突变。缺乏σ32的菌株对温度极其敏感,仅在温度小于或等于20℃时生长。在htpG基因之前的热休克启动子或groESL和dnaKJ操纵子没有转录;然而,突变体中产生了几种热休克蛋白。GroEL蛋白存在于rpoH基因缺失突变体中,但其合成不能通过转移到高温来诱导。GroEL的低水平合成是由groE操纵子的一个次要的σ70控制启动子的转录起始引起的。在低温下无法检测到DnaK蛋白的合成,但转移到4℃后可以检测到。这种热诱导合成的机制尚不清楚。我们得出结论,σ32是20℃以上细胞生长所必需的,也是热休克启动子转录所必需的。在没有σ32的情况下合成了几种热休克蛋白,这表明存在控制某些热休克蛋白合成的其他机制。