Tilly K, Erickson J, Sharma S, Georgopoulos C
J Bacteriol. 1986 Dec;168(3):1155-8. doi: 10.1128/jb.168.3.1155-1158.1986.
The Escherichia coli rpoH gene product sigma 32 is essential for the increase in heat shock gene transcription found after exposure of the bacteria to a sudden temperature increase. It is not known how the concentration of active sigma 32 is modulated. We showed that rpoH transcript levels increased after heat shock and that the magnitude of the increase in the level of mRNA was correlated with the magnitude of the temperature shift. The increase in the level of rpoH mRNA was still found in rpoH mutants so the mechanism of induction differed from that of the set of previously identified heat shock genes. The increased concentration of rpoH mRNA should result in a higher level of sigma 32, which is likely to be important for increasing heat shock gene transcription.
大肠杆菌rpoH基因产物σ32对于细菌在突然温度升高后热休克基因转录的增加至关重要。目前尚不清楚活性σ32的浓度是如何调节的。我们发现热休克后rpoH转录水平增加,并且mRNA水平增加的幅度与温度变化的幅度相关。在rpoH突变体中仍能发现rpoH mRNA水平的增加,因此诱导机制与先前鉴定的一组热休克基因不同。rpoH mRNA浓度的增加应该会导致更高水平的σ32,这可能对增加热休克基因转录很重要。