Mogk A, Völker A, Engelmann S, Hecker M, Schumann W, Völker U
Institut für Genetik, Universität Bayreuth, 95440 Bayreuth, Germany.
J Bacteriol. 1998 Jun;180(11):2895-900. doi: 10.1128/JB.180.11.2895-2900.1998.
The chaperone-encoding groESL and dnaK operons constitute the CIRCE regulon of Bacillus subtilis. Both operons are under negative control of the repressor protein HrcA, which interacts with the CIRCE operator and whose activity is modulated by the GroESL chaperone machine. In this report, we demonstrate that induction of the CIRCE regulon can also be accomplished by ethanol stress and puromycin. Introduction of the hrcA gene and a transcriptional fusion under the control of the CIRCE operator into Escherichia coli allowed induction of this fusion by heat shock, ethanol stress, and overproduction of GroESL substrates. The expression level of this hrcA-bgaB fusion inversely correlated with the amount of GroE machinery present in the cells. Therefore, all inducing conditions seem to lead to induction via titration of the GroE chaperonins by the increased level of nonnative proteins formed. Puromycin treatment failed to induce the sigmaB-dependent general stress regulon, indicating that nonnative proteins in general do not trigger this response. Reconstitution of HrcA-dependent heat shock regulation of B. subtilis in E. coli and complementation of E. coli groESL mutants by B. subtilis groESL indicate that the GroE chaperonin systems of the two bacterial species are functionally exchangeable.
伴侣蛋白编码基因groESL和dnaK操纵子构成了枯草芽孢杆菌的CIRCE调控子。这两个操纵子均受阻遏蛋白HrcA的负调控,HrcA与CIRCE操纵基因相互作用,其活性受GroESL伴侣蛋白机器的调节。在本报告中,我们证明乙醇胁迫和嘌呤霉素也能诱导CIRCE调控子。将hrcA基因及一个受CIRCE操纵基因控制的转录融合体导入大肠杆菌后,热休克、乙醇胁迫及GroESL底物的过量表达均可诱导该融合体。hrcA - bgaB融合体的表达水平与细胞中GroE机器的含量呈负相关。因此,所有诱导条件似乎都是通过增加形成的非天然蛋白水平对GroE伴侣蛋白进行滴定来实现诱导的。嘌呤霉素处理未能诱导σB依赖的一般应激调控子,这表明一般情况下非天然蛋白不会触发这种反应。在大肠杆菌中重建枯草芽孢杆菌依赖HrcA的热休克调控,以及用枯草芽孢杆菌groESL对大肠杆菌groESL突变体进行互补,表明这两种细菌的GroE伴侣蛋白系统在功能上是可互换的。