Erickson J W, Gross C A
Department of Bacteriology, University of Wisconsin, Madison 53706.
Genes Dev. 1989 Sep;3(9):1462-71. doi: 10.1101/gad.3.9.1462.
The rpoH gene of Escherichia coli encodes sigma 32, the 32-kD sigma-factor responsible for the heat-inducible transcription of the heat shock genes. rpoH is transcribed from at least three promoters. Two of these promoters are recognized by RNA polymerase containing sigma 70, the predominant sigma-factor. We purified the factor responsible for recognizing the third rpoH promoter (rpoH P3) and identified it as RNA polymerase containing a novel sigma-factor with an apparent Mr of 24,000. This new sigma, which we call sigma E, is distinct from the known sigma factors in molecular weight and promoter specificity. sigma E holoenzyme will not recognize the sigma 70- or sigma 32-controlled promoters we tested, but it does transcribe the htrA gene, which is required for viability at temperatures greater than 42 degrees C. The in vivo role of sigma E is not known. The transcripts from the sigma E-controlled rpoH P3 and htrA promoters are most abundant at very high temperature, suggesting the sigma E holoenzyme may transcribe a second set of heat-inducible genes that are involved in growth at high temperature or in thermotolerance.
大肠杆菌的rpoH基因编码σ32,即一种32kD的σ因子,负责热休克基因的热诱导转录。rpoH至少从三个启动子转录。其中两个启动子被含有σ70(主要的σ因子)的RNA聚合酶识别。我们纯化了负责识别第三个rpoH启动子(rpoH P3)的因子,并将其鉴定为含有一种表观分子量为24,000的新型σ因子的RNA聚合酶。这种新的σ因子,我们称之为σE,在分子量和启动子特异性方面与已知的σ因子不同。σE全酶不会识别我们测试的σ70或σ32控制的启动子,但它确实转录htrA基因,该基因是在高于42摄氏度的温度下生存所必需的。σE在体内的作用尚不清楚。来自σE控制的rpoH P3和htrA启动子的转录本在非常高的温度下最为丰富,这表明σE全酶可能转录第二组热诱导基因,这些基因参与高温生长或耐热性。