Suppression of rpoH (htpR) mutations of Escherichia coli: heat shock response in suhA revertants.
نویسندگان
چکیده
Temperature-resistant pseudorevertants were isolated from rpoH (htpR) mutants of Escherichia coli K-12 that cannot grow at a high temperature owing to a deficiency in sigma 32 required for the induction of heat shock proteins. Among them was a class of revertants carrying a suppressor mutation, designated suhA, that suppressed all the nonsense and missense rpoH mutations tested. suhA is located at 77 min, about 1 min away from rpoH, on the genetic map. In contrast to the rpoH mutants, the suhA revertants that contained both rpoH (nonsense) and suhA mutations were fully or partially proficient in the induction of heat shock proteins upon exposure to a high temperature. Under these conditions, transcription from two heat shock promoters as determined by operon fusion was transiently activated. In one of the rpoH(Am) suhA revertants studied in detail, an increase in temperature caused the synthesis of significant amounts of sigma 32, accompanied by increased stability and accumulation of rpoH mRNAs. On the other hand, the same mutation (suhA6) only weakly suppressed the rpoH deletion mutant; however, two of the major heat shock genes, dnaK and groE, were apparently induced in the absence of sigma 32. Thus, suhA6 seems to bring about the induction of heat shock genes by at least two mechanisms, one increasing the level of sigma 32 synthesis, and the other activating some transcription factor other than sigma 32.
منابع مشابه
Identification of a temperature-sensitive mutation in the htpR (rpoH) gene of Escherichia coli K-12.
A new mutation in the htpR (rpoH) gene of Escherichia coli K-12 was identified. The mutation resulted in a temperature-sensitive phenotype in terms of cell growth and bacteriophage lambda development. As in the case of the classical htpR tsn-165 mutation, synthesis of heat shock polypeptides was not induced in strains carrying the mutation described here.
متن کاملRegulation of the promoters and transcripts of rpoH, the Escherichia coli heat shock regulatory gene.
In Escherichia coli the product of the rpoH (htpR) gene, sigma 32, directs RNA polymerase to initiate transcription from heat shock promoters at all temperatures. Transcription of the heat shock genes is increased when cells are exposed to high temperatures because of increased transcription initiation by sigma 32-RNA polymerase. As a step toward understanding the regulation of the heat shock r...
متن کاملdnaA protein regulates transcriptions of the rpoH gene of Escherichia coli.
The rpoH (htpR) gene of Escherichia coli encodes a sigma factor which confers upon RNA polymerase the ability to recognize the promoters for genes responsive to the phenomenon termed the heat shock response. dnaA protein, a sequence-specific DNA binding protein, is required for initiation of chromosomal replication by binding to sites within the chromosomal origin. dnaA protein also autoregulat...
متن کاملHeat shock protein GroE of Escherichia coli: key protective roles against thermal stress.
An Escherichia coli mutant lacking the heat shock sigma-factor (sigma 32) is defective in transcription from heat shock promoters and cannot grow at temperatures above 20 degrees C. To assess physiological roles of sigma 32 and heat shock proteins, we isolated and characterized a set of temperature-resistant revertants from this deletion (delta rpoH) mutant. Most of them were found to carry a D...
متن کاملConsensus sequence for Escherichia coli heat shock gene promoters.
We have identified promoters for the Escherichia coli heat shock operons dnaK and groE and the gene encoding heat shock protein C62.5. Transcription from each promoter is heat-inducible in vivo, and each is recognized in vitro by RNA polymerase containing sigma 32, the sigma factor encoded by rpoH (htpR) but not by RNA polymerase containing sigma 70. We compared the sequences of the heat shock ...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Journal of bacteriology
دوره 169 9 شماره
صفحات -
تاریخ انتشار 1987