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枯草芽孢杆菌转录因子Spo0A的磷酸化通过增强与弱0A框的结合来刺激spoIIG启动子的转录。

Phosphorylation of Bacillus subtilis transcription factor Spo0A stimulates transcription from the spoIIG promoter by enhancing binding to weak 0A boxes.

作者信息

Baldus J M, Green B D, Youngman P, Moran C P

机构信息

Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, Georgia 30322.

出版信息

J Bacteriol. 1994 Jan;176(2):296-306. doi: 10.1128/jb.176.2.296-306.1994.

Abstract

Activation of the spoIIG promoter at the onset of sporulation in Bacillus subtilis requires the regulatory protein, Spo0A, which binds to two sites in the promoter, sites 1 and 2. Phosphorylation of Spo0A is essential for the initiation of sporulation. Therefore, we examined the role of Spo0A phosphorylation in spoIIG promoter activation. Phosphorylation of Spo0A stimulated transcription from the spoIIG promoter in vitro. In DNAse I footprinting experiments with the spoIIG promoter, we found that phosphorylation of Spo0A increased its affinity for site 2 more than for site 1, which is the site to which nonphosphorylated Spo0A binds most avidly. This result could not be explained by increased cooperativity between Spo0A bound at sites 1 and 2 because the increased affinity for site 2 by phosphorylated Spo0A was also observed with a deletion derivative of the spoIIG promoter containing only site 2. We have located Spo0A-binding sequences in the spoIIG promoter by DMS protection assays and mutational analysis, and found that site 1 contains one higher-affinity binding sequence whereas site 2 contains two weaker-binding sites. Two substitutions in site 2 of the spoIIG promoter that change the sequence to be more like an optimal Spo0A-binding site were found to increase promoter activity. Moreover, phosphorylation of Spo0A was not required in vivo for activation of the spoIIG promoter containing these strong binding sites. The results suggest that the primary role for phosphorylation of Spo0A is to increase its affinity for specific sites rather than to activate an activity of Spo0A that acts on RNA polymerase at promoters.

摘要

枯草芽孢杆菌在芽孢形成开始时spoIIG启动子的激活需要调控蛋白Spo0A,它与启动子中的两个位点(位点1和位点2)结合。Spo0A的磷酸化对于芽孢形成的起始至关重要。因此,我们研究了Spo0A磷酸化在spoIIG启动子激活中的作用。Spo0A的磷酸化在体外刺激了spoIIG启动子的转录。在用spoIIG启动子进行的DNA酶I足迹实验中,我们发现Spo0A的磷酸化增加了它对位点2的亲和力,比对位点1的亲和力增加得更多,位点1是未磷酸化的Spo0A最 avidly结合的位点。这个结果不能用在位点1和位点2结合的Spo0A之间增加的协同性来解释,因为在用仅包含位点2的spoIIG启动子的缺失衍生物进行实验时,也观察到了磷酸化的Spo0A对位点2的亲和力增加。我们通过二甲基亚砜(DMS)保护分析和突变分析确定了spoIIG启动子中的Spo0A结合序列,发现位点1包含一个高亲和力结合序列,而位点2包含两个低亲和力结合位点。spoIIG启动子位点2中的两个取代使序列更像一个最佳的Spo0A结合位点,发现这增加了启动子活性。此外,在体内激活包含这些强结合位点的spoIIG启动子不需要Spo0A的磷酸化。结果表明,Spo0A磷酸化的主要作用是增加其对特定位点的亲和力,而不是激活Spo0A在启动子上作用于RNA聚合酶的活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34ff/205050/3a7375bf0e59/jbacter00020-0042-a.jpg

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