Baldini R L, Avedissian M, Gomes S L
Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, Brazil.
J Bacteriol. 1998 Apr;180(7):1632-41. doi: 10.1128/JB.180.7.1632-1641.1998.
The groESL operon is under complex regulation in Caulobacter crescentus. In addition to strong induction after exposure to heat shock, under physiological growth conditions, its expression is subject to cell cycle control. Transcription and translation of the groE genes occur primarily in predivisional cells, with very low levels of expression in stalked cells. The regulatory region of groESL contains both a sigma32-like promoter and a CIRCE element. Overexpression of C. crescentus sigma32 gives rise to higher levels of GroEL and increased levels of the groESL transcript coming from the sigma32-like promoter. Site-directed mutagenesis in CIRCE has indicated a negative role for this cis-acting element in the expression of groESL only at normal growth temperatures, with a minor effect on heat shock induction. Furthermore, groESL-lacZ transcription fusions carrying mutations in CIRCE are no longer cell cycle regulated. Analysis of an hrcA null strain, carrying a disruption in the gene encoding the putative repressor that binds to the CIRCE element, shows constitutive synthesis of GroEL throughout the Caulobacter cell cycle. These results indicate a negative role for the hrcA gene product and the CIRCE element in the temporal control of the groESL operon.
在新月柄杆菌中,groESL操纵子受到复杂的调控。除了在热休克暴露后受到强烈诱导外,在生理生长条件下,其表达还受细胞周期控制。groE基因的转录和翻译主要发生在预分裂细胞中,在柄细胞中的表达水平非常低。groESL的调控区域包含一个类σ32启动子和一个CIRCE元件。新月柄杆菌σ32的过表达导致GroEL水平升高,并且来自类σ32启动子的groESL转录本水平增加。CIRCE中的定点诱变表明,仅在正常生长温度下,这个顺式作用元件对groESL的表达起负作用,对热休克诱导的影响较小。此外,携带CIRCE突变的groESL-lacZ转录融合不再受细胞周期调控。对一个hrcA缺失菌株的分析表明,该菌株中编码与CIRCE元件结合的假定阻遏物的基因发生了破坏,在整个新月柄杆菌细胞周期中都显示出GroEL的组成型合成。这些结果表明hrcA基因产物和CIRCE元件在groESL操纵子的时间控制中起负作用。