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枯草芽孢杆菌应答调节因子Spo0A的结构域对spoIIG操纵子转录刺激的作用

Contributions of the domains of the Bacillus subtilis response regulator Spo0A to transcription stimulation of the spoIIG operon.

作者信息

Rowe-Magnus D A, Spiegelman G B

机构信息

Department of Microbiology and Immunology, University of British Columbia, Vancouver, British Columbia V6T 1Z3, Canada.

出版信息

J Biol Chem. 1998 Oct 2;273(40):25818-24. doi: 10.1074/jbc.273.40.25818.

Abstract

Spo0A is a response regulator that controls entry into sporulation by specifically stimulating or repressing transcription of critical developmental genes. Response regulators have at least two domains: an output transcription regulation domain and a receiver domain that inhibits the output domain. Phosphorylation of the receiver domain relieves the inhibition. We examined the in vitro transcription activation mechanism for Spo0A, phosphorylated Spo0A (Spo0A approximately P), and a deletion mutant that consists solely of the C-terminal output domain (Spo0ABD). Both Spo0A approximately P and Spo0ABD stimulated transcription from the spoIIG promoter 10-fold more efficiently than Spo0A. Spo0A approximately P and Spo0ABD induced DNA denaturation by RNA polymerase in the -10 recognition region, whereas Spo0A did not. DNase I footprint assays revealed that phosphorylation enhanced binding of intact Spo0A to the 0A boxes, while the binding of Spo0ABD was similar to that of Spo0A. Thus, activation of Spo0A by phosphorylation is not primarily due to enhanced DNA binding. The presence of a phosphorylated N terminus increased the stability of the ternary complex at the spoIIG promoter. We propose that the primary effect of phosphorylation is to expose an RNA polymerase interaction domain to promote transcription from PspoIIG.

摘要

Spo0A是一种应答调节因子,通过特异性刺激或抑制关键发育基因的转录来控制芽孢形成的进入。应答调节因子至少有两个结构域:一个输出转录调节结构域和一个抑制输出结构域的接收结构域。接收结构域的磷酸化解除抑制。我们研究了Spo0A、磷酸化的Spo0A(Spo0AP)以及仅由C端输出结构域组成的缺失突变体(Spo0ABD)的体外转录激活机制。Spo0AP和Spo0ABD刺激spoIIG启动子转录的效率比Spo0A高10倍。Spo0A~P和Spo0ABD在-10识别区域诱导RNA聚合酶导致DNA变性,而Spo0A则不会。DNase I足迹分析表明,磷酸化增强了完整Spo0A与0A框的结合,而Spo0ABD的结合与Spo0A相似。因此,磷酸化对Spo0A的激活主要不是由于增强了DNA结合。磷酸化的N端的存在增加了spoIIG启动子处三元复合物的稳定性。我们提出,磷酸化的主要作用是暴露一个RNA聚合酶相互作用结构域,以促进从PspoIIG转录。

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