Quorum Sensing in Group B Streptococcus
Quorum Sensing in Group B Streptococcus
批准号:
7140528
负责人:
MICHAEL John CIESLEWICZ
金额:
$20.63万
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:
2005-07-01 至 2007-06-30
关键词:
Streptococcus agalactiaeanimal mortalitybacteria infection mechanismbacterial geneticsbacterial meningitisbacterial proteinsbiological signal transductionfusion genegene deletion mutationgene expressiongenetic regulationgenetically modified animalshost organism interactionlaboratory mousemicroarray technologymolecular geneticsopportunistic infectionspolymerase chain reactionquorum sensingreporter genesvirulence
中文摘要
描述(由申请方提供):B组链球菌(无乳链球菌或GBS)是革兰氏阳性新生儿脑膜炎的主要原因,也是老年人和慢性病成人严重感染的重要原因。虽然GBS通常表现为一种无害的肠道菌群,在近三分之一的成年女性的胃肠道和生殖道中定植,但它有能力在易感宿主中产生危及生命的感染。与GBS从无害的寄生虫到侵入性病原体的转变相关的因素尚不清楚,但可能涉及对各种宿主环境中遇到的特定线索作出反应的细菌机制的库。据推测,革兰氏阳性和革兰氏阴性细菌通过分泌LuxS依赖性AI-2信号分子利用密度依赖性传感机制(称为“群体感应”),该信号分子与其他生物体通信以及调节细菌基因表达。我们已经确定并构建了一个非极性缺失突变体的LuxS同源GBS。与野生型亲本菌株相比,luxS缺失突变体在哈维氏弧菌的AI-2报告菌株中产生降低的生物发光,表明GBS能够响应LuxS依赖性AI-2信号传导分子。本提案的总体目标是(1)确定由LuxS依赖性AI-2信号传导分子调控的GBS基因阵列,以及确定AI-2分子对GBS毒力的贡献,以及(2)确定LuxS依赖性AI-2信号传导分子调控GBS基因表达的分子机制。这些目的将通过以下方式实现:(A)通过微阵列分析比较野生型GBS和同基因luxS缺失突变体的转录体,随后进行小鼠致死性研究,以评估AI-2对毒力的贡献,和(B)在响应LuxS依赖性AI-2信号传导分子而调节的基因中构建报道融合体,以确定基因调节是否通过LuxS依赖性AI-2信号传导分子的细胞外积累实现。2分子。
英文摘要
DESCRIPTION (provided by applicant): Group B Streptococcus (Streptococcus agalactiae or GBS) is the leading cause of gram positive neonatal meningitis and is an increasingly important cause of serious infection in elderly and chronically ill adults. Although GBS usually behaves as a harmless commensal colonizing the gastrointestinal and genital tracts of nearly a third of adult women, it has the capacity to produce life-threatening infection in susceptible hosts. The factors associated with the transition of GBS from harmless commensal to invasive pathogen are not known but are likely to involve a repertoire of bacterial mechanisms that respond to specific cues encountered in various host environments. It has been speculated that gram-positive and gram-negative bacteria utilize a density-dependent sensing mechanism (termed "quorum sensing") through secretion of a LuxS dependent AI-2 signaling molecule that communicates with other organisms as well as regulates bacterial gene expression. We have identified and constructed a non-polar deletion mutant in a LuxS homolog in GBS. The luxS deletion mutant produces decreased bioluminescence in an AI-2 reporter strain of Vibrio harveyi compared to the wild type parent strain suggesting that GBS is capable of responding to the LuxS dependent AI-2 signaling molecule. The overall objectives of this proposal are to (1) determine the array of GBS genes regulated by the LuxS dependent AI-2 signaling molecule as well as determine the contribution of the AI-2 molecule to GBS virulence and (2) determine the molecular mechanism by which the LuxS dependent AI-2 signaling molecule regulates GBS gene expression. These objectives will be achieved by (A) comparing the transcriptisomes of wild type GBS and an isogenic luxS deletion mutant by microarray analysis followed by mouse lethality studies to assess the contribution of AI-2 to virulence and (B) constructing reporter fusions in genes regulated in response to the LuxS dependent AI-2 signaling molecule to determine if gene regulation is achieved by extracellular accumulation of a LuxS dependent AI-2 molecule.
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Quorum Sensing in Group B Streptococcus
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批准号:6984539
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项目类别:
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资助金额:$25.31万
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财政年份:2005
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负责人:MICHAEL John CIESLEWICZ
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依托单位:
Transcriptional regulation of GBS capsule biosynthesis
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批准号:6340373
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项目类别:
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资助金额:$4.2万
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财政年份:2001
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负责人:MICHAEL John CIESLEWICZ
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依托单位: