Bucca G, Hindle Z, Smith C P
Department of Biochemistry and Applied Molecular Biology, U.M.I.S.T., Manchester, United Kingdom.
J Bacteriol. 1997 Oct;179(19):5999-6004. doi: 10.1128/jb.179.19.5999-6004.1997.
The dnaK operon of Streptomyces coelicolor contains four genes (5'-dnaK-grpE-dnaJ-hspR). The fourth gene encodes a novel heat shock protein, HspR, which appears so far to be unique to the high-G+C actinomycete group of bacteria. HspR binds with high specificity to three inverted repeat sequences in the promoter region of the S. coelicolor dnaK operon, strongly suggesting a direct role for HspR in heat shock gene regulation. Here we present genetic and biochemical evidence that HspR is the repressor of the dnaK operon. Disruption of hspR leads to high-level constitutive transcription of the dnaK operon. Parallel transcriptional analyses of groESL1 and groEL2 expression demonstrated that heat shock regulation of the groE genes was essentially unaffected in an hspR null mutant, although the basal (uninduced) level of groEL2 transcription was slightly elevated compared with the wild type. The results of HspR titration experiments, where the dnaK operon promoter region was cloned at ca. 50 copies per chromosome, were consistent with the prediction that HspR functions as a negative autoregulator. His-tagged HspR, overproduced and purified from Escherichia coli, was shown to repress transcription from the dnaK operon promoter in vitro, providing additional evidence for the proposal that HspR directly regulates transcription of the dnaK operon. These studies indicate that there are at least two transcriptional mechanisms for controlling heat shock genes in S. coelicolor--one controlling the dnaK operon and another controlling the groE genes.
天蓝色链霉菌的dnaK操纵子包含四个基因(5'-dnaK-grpE-dnaJ-hspR)。第四个基因编码一种新型热休克蛋白HspR,到目前为止,它似乎是高G+C含量放线菌组细菌所特有的。HspR与天蓝色链霉菌dnaK操纵子启动子区域的三个反向重复序列高度特异性结合,强烈表明HspR在热休克基因调控中起直接作用。在此,我们提供遗传和生化证据表明HspR是dnaK操纵子的阻遏物。hspR的破坏导致dnaK操纵子的高水平组成型转录。对groESL1和groEL2表达的平行转录分析表明,尽管与野生型相比,groEL2转录的基础(未诱导)水平略有升高,但在hspR缺失突变体中,groE基因的热休克调控基本未受影响。HspR滴定实验的结果与HspR作为负自调节因子发挥作用的预测一致,在该实验中,dnaK操纵子启动子区域以每条染色体约50个拷贝进行克隆。从大肠杆菌中过量表达并纯化的His标签HspR在体外可抑制dnaK操纵子启动子的转录,为HspR直接调控dnaK操纵子转录的提议提供了额外证据。这些研究表明,天蓝色链霉菌中至少有两种转录机制控制热休克基因——一种控制dnaK操纵子,另一种控制groE基因。