Servant P, Thompson C J, Mazodier P
Unité de Génie Microbiologique, Institut Pasteur, Paris, France.
Mol Microbiol. 1994 May;12(3):423-32. doi: 10.1111/j.1365-2958.1994.tb01031.x.
Thermally induced expression of the heat-shock gene groEL is subject to post-transcriptional regulation in Streptomyces albus. When S. albus cells were shifted from 30 degrees C to 41 degrees C, synthesis of three GroEL-like proteins was induced from two genes transcribed from associated promoters P1 and P2. Surprisingly, analyses of transcriptional fusions of these promoters with various reporter genes indicated constitutive expression independent of heat shock. In contrast, neo expression was thermally inducible as a GroEL1-APH translational fusion protein. Furthermore, expression of the groEL1-neo gene was heat inducible even after the groEL1 promoter region was replaced by a heterologous non-heat-inducible promoter such as the Escherichia coli lac promoter. Finally, synthesis of GroE proteins, as well as the GroEL-APH fusion protein, was heat inducible when their transcription was inhibited by rifampicin. Post-transcriptional regulatory signals needed for heat-induced GroEL1 synthesis were mapped within of the groEL1 structural gene.
热激基因groEL的热诱导表达在白色链霉菌中受到转录后调控。当白色链霉菌细胞从30℃转移至41℃时,由相关启动子P1和P2转录的两个基因诱导合成了三种GroEL样蛋白。令人惊讶的是,这些启动子与各种报告基因的转录融合分析表明其组成型表达与热激无关。相反,新霉素抗性基因(neo)的表达作为GroEL1-APH翻译融合蛋白是热诱导性的。此外,即使groEL1启动子区域被异源非热诱导启动子(如大肠杆菌lac启动子)取代,groEL1-neo基因的表达仍受热诱导。最后,当利福平抑制GroE蛋白以及GroEL-APH融合蛋白的转录时,它们的合成仍是热诱导性的。热诱导GroEL1合成所需的转录后调控信号定位于groEL1结构基因内。