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流感嗜血杆菌感受态发育的调控

Regulation of competence development in Haemophilus influenzae.

作者信息

Macfadyen L P

机构信息

Department of Zoology, University of British Columbia, Vancouver, British Columbia, V6T 1Z4, Canada.

出版信息

J Theor Biol. 2000 Dec 7;207(3):349-59. doi: 10.1006/jtbi.2000.2179.

Abstract

Development of competence for DNA uptake by the bacterium Haemophilus influenzae is tightly regulated, and expression of the cell's complement of competence genes is absolutely dependent on the cAMP-CRP complex. A second regulator of competence may maximize competence under starvation conditions. Several investigators have recently identified a consensus sequence (competence regulatory element, CRE) in the promoter regions of some competence genes and have proposed that this may be a binding site for Sxy (TfoX), a putative positive regulator of competence. However, a scoring method that reliably ranks candidate binding sites according to affinity for the cognate binding protein predicts that the cAMP-CRP complex will bind CRE sequences with high affinity. Moreover, the predicted Sxy protein lacks recognizable DNA-binding motifs and has not been shown to bind DNA. No other consensus sequences (putative binding sites) were identified in the promoter regions of competence genes. These observations suggest that the proposed competence-specific regulatory elements are in fact CRP-binding sites, and highlight the central role of cAMP-an established bacterial mediator of the response to nutritional stress-in competence regulation. Minor sequence elements uniquely conserved in the set of CRE sequences are predicted to reduce CRP affinity, and a model is suggested in which a secondary regulator of competence genes may interact with CRP under certain conditions to stabilize the initiation complex.

摘要

流感嗜血杆菌摄取DNA能力的发展受到严格调控,细胞内感受态基因的表达完全依赖于cAMP-CRP复合物。感受态的第二个调节因子可能在饥饿条件下使感受态最大化。最近,几位研究人员在一些感受态基因的启动子区域发现了一个共有序列(感受态调节元件,CRE),并提出这可能是Sxy(TfoX)的结合位点,Sxy是一种假定的感受态正调节因子。然而,一种根据对同源结合蛋白的亲和力可靠地对候选结合位点进行排序的评分方法预测,cAMP-CRP复合物将以高亲和力结合CRE序列。此外,预测的Sxy蛋白缺乏可识别的DNA结合基序,且尚未显示其能结合DNA。在感受态基因的启动子区域未发现其他共有序列(假定结合位点)。这些观察结果表明,所提出的感受态特异性调节元件实际上是CRP结合位点,并突出了cAMP(一种已确定的细菌对营养应激反应的介质)在感受态调节中的核心作用。预计CRE序列组中独特保守的小序列元件会降低CRP亲和力,并提出了一个模型,其中感受态基因的二级调节因子可能在某些条件下与CRP相互作用以稳定起始复合物。

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