课题基金 / 基金详情

Virulence Mechanism of Y. pestis and tularensis

Virulence Mechanism of Y. pestis and tularensis
鼠疫耶尔森菌和土拉尔菌的毒力机制
批准号:
6730804
负责人:
David G Thanassi
金额:
$36.39万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-09-01 至 2008-08-31

项目摘要

项目成果

David G Thanassi的其他基金

相关文献

中文摘要
翻译
鼠疫耶尔森菌和土拉弗朗西斯菌分别是鼠疫和土拉菌病的病原体。这两种细菌在雾化时对人类都具有极强的毒性,因此有可能被用作生物恐怖主义的代理人。迫切需要进一步了解鼠疫杆菌和土拉菌发病机制的分子机制。本研究的目的是对鼠疫杆菌和土拉菌的毒力因子进行表征,并阐明毒力因子的生物发生机制。鼠疫杆菌的基因组测序显示存在10个伴侣/usher分泌途径,其中8个是先前发现的
英文摘要
Yersinia pestis and Francisella tularensis are the causative agents of plague and tularemia, respectively. Both of these bacteria are extremely virulent for humans when aerosolized and thus have the potential for use as agents of bioterrorism. Greater knowledge of the molecular mechanisms underlying Y. pestis and F. tularensis pathogenesis is urgently needed. The goals of this proposal are to characterize Y. pestis and F. tularensis virulence factors and to elucidate mechanisms of virulence factor biogenesis. Genome sequencing of Y. pestis revealed the presence of ten chaperone/usher secretion pathways, eight of which were previously unknown. Chaperone/usher pathways are utilized by a broad range of bacterial pathogens for the biogenesis of virulence-associated surface structures. The first specific aim of this proposal is to investigate the chaperone/usher pathways of Y. pestis. Expression of the novel pathways will be determined and the roles of the pathways in pathogenesis will be tested by aerosol infection of mice. Pathways with a virulence phenotype will be selected for further analysis. In addition, detailed analysis of F1 capsule biogenesis by the previously known caf chaperone/usher pathway will be performed. The F1 capsule is the major protective antigen of K pestis. The molecular basis for the virulence of F. tularensis is largely unknown. The second specific aim of this proposal is to identify and characterize potential virulence factors of F. tularensis, focusing on surface and secreted proteins. A bioinformatics approach will be used to mine the F. tularensis genome for secretion systems, secreted proteins and surface structures. Ultrastructural and biochemical methods will be used to directly visualize and isolate F. tularensis surface structures and secreted proteins. Potential virulence factors will be tested for their roles in pathogenesis by aerosol infection of mice. This proposal will be done in close collaboration with the other Projects and Core facilities of the Program Project Grant entitled "Agents of Bioterrorism: Pathogenesis and Host Defense." The work described in this proposal and the Program Project Grant will provide insights into the pathogenesis of Y. pestis and F. tularensis, and create opportunities for the development of novel methods to detect, prevent and treat outbreaks of plague or tularemia.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Stony Brook University Laboratory for Comparative Medicine to Support Pandemic Preparedness
Modulation of Host Cell Responses by Francisella tularensis
Modulation of Host Cell Responses by Francisella tularensis
Modulation of Host Cell Responses by Francisella tularensis