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Identification of rovA Regulators in Y.Enterocolitica

Identification of rovA Regulators in Y.Enterocolitica
小肠结肠炎耶尔森氏菌中 rovA 调节因子的鉴定
批准号:
7225213
负责人:
Matthew B Lawrenz
金额:
$1.73万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-05-01 至 2007-08-31

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中文摘要
翻译
描述(由申请人提供):耶尔森氏菌属包含三种致病菌种。Y. enterocolitica和Y.假结核是引起胃肠炎的肠道病原体,Y.鼠疫是鼠疫的病原体。耶尔森氏菌RovA蛋白是细菌全局调节因子的马尔R/SlyA家族的成员,并且首先被鉴定为inv的正调节因子,inv是编码侵袭素的基因,侵袭素是参与感染初始阶段的关键毒力因子。RovA是完全毒力所必需的,并且RovA突变体比inv突变体更减毒,这表明RovA可能调节毒力所需的其他基因。RovA对多种毒力因子的调节提供了介导毒力的中心控制点和控制几个基因表达的调节检查点。因此,诱导或抑制rovA表达的环境因素反过来会同时调节几个基因,从而协调建立感染所需的因子的表达。在这里,我建议确定感染过程中的rovA的表达模式,并确定调节rovA表达的环境因素。此外,将使用转座子诱变和启动子结合测定来鉴定rovA调节剂。最后,我建议,以确定是否rovA监管机构与rovA启动子和rovA监管机构的毒力的作用相互作用。这些目标的完成将大大提高我们对Y.并可能在耶尔森氏菌中发现新的毒力调节途径。
英文摘要
DESCRIPTION (provided by applicant): The genus Yersinia contains three pathogenic species. Y. enterocolitica and Y. pseudotuberculosis are enteric pathogens that cause gastroenteritis, and Y. pestis is the causative agent of plague. The Yersinia RovA protein is a member of the MarR/SlyA family of bacterial global regulators and was first identified as a positive regulator of inv, the gene that encodes invasin, a critical virulence factor involved in the initial stages of infection. RovA is necessary for full virulence and a rovA mutant is more attenuated than an inv mutant, which indicates that RovA may regulate other genes required for virulence. The regulation of multiple virulence factors by RovA provides a central control point to mediate virulence and a regulatory checkpoint to control expression of several genes. Therefore, environmental factors that induce or repress expression of rovA will in turn regulate several genes at once, allowing for the coordination of expression of factors necessary to establish infection. Here I propose to identify the expression pattern of rovA during infection and to determine the environmental factors that regulate rovA expression. Furthermore, rovA regulators will be identified using transposon mutagenesis and promoter binding assays. Finally, I propose to determine whether rovA regulators interact with the rovA promoter and the role of rovA regulators in virulence. Completion of these aims will greatly enhance our knowledge of the regulation of an important virulence factor in Y. enterocolitica and may identify novel virulence regulatory pathways in Yersinia.
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