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大肠杆菌udp启动子处CRP-CytR相互作用的分析。

Analysis of CRP-CytR interactions at the Escherichia coli udp promoter.

作者信息

Brikun I, Suziedelis K, Stemmann O, Zhong R, Alikhanian L, Linkova E, Mironov A, Berg D E

机构信息

Department of Molecular Microbiology, Washington University Medical School, St. Louis, Missouri 63110, USA.

出版信息

J Bacteriol. 1996 Mar;178(6):1614-22. doi: 10.1128/jb.178.6.1614-1622.1996.

Abstract

Multiprotein complexes regulate the transcription of certain bacterial genes in a sensitive, physiologically responsive manner. In particular, the transcription of genes needed for utilization of nucleosides in Escherichia coli is regulated by a repressor protein, CytR, in concert with the cyclic AMP (cAMP) activated form of cAMP receptor protein (CRP). We studied this regulation by selecting and characterizing spontaneous constitutive mutations in the promoter of the udp (uridine phosphorylase) gene, one of the genes most strongly regulated by CytR. We found deletions, duplications, and point mutations that affect key regulatory sites in the udp promoter, insertion sequence element insertions that activated cryptic internal promoters or provided new promoters, and large duplications that may have increased expression by udp gene amplification. Unusual duplications and deletions that resulted in constitutive udp expression that depended on the presence of CytR were also found. Our results support the model in which repression normally involves the binding of CytR to cAMP-CRP to form a complex which binds to specific sites in the udp promoter, without direct interaction between CytR protein and a specific operator DNA sequence, and in which induction by specific inducer cytidine involves dissociation of CytR from cAMP-CRP and the RNA polymerase interaction with cAMP-CRP bound to a site upstream of then transcription start point. The stimulation of udp expression by CytR in certain mutants may reflect its stabilization of cAMP-CRP binding to target DNA and illustrates that only modest evolutionary changes could allow particular multiprotein complexes to serve as either repressors or transcriptional activators.

摘要

多蛋白复合物以一种敏感的、生理反应性的方式调节某些细菌基因的转录。具体而言,大肠杆菌中核苷利用所需基因的转录由阻遏蛋白CytR与环磷酸腺苷(cAMP)激活形式的cAMP受体蛋白(CRP)协同调节。我们通过选择和表征udp(尿苷磷酸化酶)基因启动子中的自发组成型突变来研究这种调节,udp基因是受CytR调控最强的基因之一。我们发现了影响udp启动子关键调控位点的缺失、重复和点突变,激活隐蔽内部启动子或提供新启动子的插入序列元件插入,以及可能通过udp基因扩增增加表达的大片段重复。还发现了导致依赖CytR存在的组成型udp表达的异常重复和缺失。我们的结果支持这样一种模型,即正常情况下的抑制涉及CytR与cAMP-CRP结合形成复合物,该复合物结合到udp启动子中的特定位点,CytR蛋白与特定操纵子DNA序列之间没有直接相互作用,而特定诱导剂胞苷的诱导涉及CytR从cAMP-CRP解离以及RNA聚合酶与结合在转录起始点上游位点的cAMP-CRP相互作用。在某些突变体中CytR对udp表达的刺激可能反映了其对cAMP-CRP与靶DNA结合的稳定作用,并表明只有适度的进化变化才能使特定的多蛋白复合物既可以作为阻遏物也可以作为转录激活剂。

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