New approaches to studying host-chlamydia interactions
New approaches to studying host-chlamydia interactions
批准号:
6849393
负责人:
Joanne N. Engel
金额:
$22.73万
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:
2005-04-01 至 2007-03-31
中文摘要
描述(由申请方提供):衣原体属是专性细胞内寄生虫,是重要的人类病原体。C.在西方世界,沙眼是性传播疾病的主要原因,也是可预防的不育症的主要原因,在发展中国家,它是非先天性失明的主要原因。C.肺炎是人类呼吸道感染的重要原因,并且与动脉粥样硬化疾病的发展有关。衣原体物种有一个独特的细胞内生命周期,但了解其细节和疾病发病机制一直受到生物体生长困难和缺乏遗传学的阻碍。在这项R21探索性资助中,我们提出了一种新的正向遗传筛选,以确定成功感染所需的宿主因素。RNA干扰介导的基因失活提供了一种新的方法,可以很容易地抑制大多数基因的表达,导致功能性敲除。它提供了一种新的方法来进行大规模的向前遗传筛选。黑腹果蝇的基因组相对较小且无冗余,为研究这些过程提供了理想的“遗传”宿主。果蝇很容易摄取小的干扰RNA,使整个果蝇以及果蝇组织培养细胞中的基因有效失活。包括加州大学旧金山分校在内的几个研究小组已经在果蝇组织培养细胞中成功地进行了全基因组RNAi介导的正向遗传筛选。果蝇幼虫和组织培养细胞最近已被用作模型系统,以了解几个重要的人类病原体的发病机制。在初步的实验中,我们已经建立了C。沙眼衣原体感染果蝇组织培养细胞模拟初始衣原体-哺乳动物细胞相互作用的关键方面。我们的长期目标是了解衣原体如何导致人类疾病。我们的短期目标是确定衣原体致病所需的宿主基因。具体目标1:我们将在果蝇S2细胞中使用RNA介导的基因失活来系统地分析所有遗传上保守的基因,以鉴定C.沙眼感染我们将定义详细的表型,并剖析成功结合、进入和胞内发育所需的每个基因的作用机制。沙眼具体目标二:我们将通过灭活HeLa细胞中的人类同源基因来验证筛选,并将进一步研究这些宿主基因在C.沙眼感染总之,这些研究将大大提高我们对传染病发病机制的认识,并为新疗法和疫苗铺平道路。
英文摘要
DESCRIPTION (provided by applicant): Chlamydia species are obligate intracellular parasites that are important human pathogens. C. trachomatis is the leading cause of sexually transmitted diseases and a key cause of preventable infertility in the western world, and the major cause of non-congenital blindness in developing nations. C. pneumoniae is an important cause of human respiratory infections and has been associated with the development of atherosclerotic disease. Chlamydia species have a unique intracellular life cycle but understanding its details and the mechanisms of disease pathogenesis has been hampered by the difficulty in growing the organism and the lack of genetics. In this R21 exploratory grant, we propose a novel forward genetic screen to identify host factors required for successful infection. RNA interference mediated gene inactivation provides a new approach to easily inhibit the expression of most genes, resulting in functional knockouts. It offers a novel approach to carry out large-scale forward genetic screens. Drosophila melanogaster, with its relatively small and non-redundant genome, provides an ideal "genetic" host in which to study these processes. Drosophila readily takes up small interfering RNA, allowing efficient inactivation of genes in whole flies as well as in Drosophila tissue culture cells. Several groups, including at UCSF, have had spectacular success carrying out genome-wide RNAi-mediated forward genetic screens in Drosophila tissue culture cells. Drosophila larvae and tissue culture cells have recently been used as a model system to understand the pathogenesis of several important human pathogens. In preliminary experiments, we have established that C. trachomatis infection of Drosophila tissue culture cells mimics key aspects of initial Chlamydia-mammalian cell interactions. Our long term goal is to understand how Chlamydia causes disease in humans. Our short-term goals are to identify host genes required for Chlamydial pathogenesis. Specific Aim 1: We will use RNA-mediated gene inactivation in Drosophila S2 cells to systematically inactivate all phylogentically conserved genes to identify host genes required for C. trachomatis infection. We will define the detailed phenotype and dissect the mechanism of action of each gene required for successful binding, entry, and intracellular development of C. trachomatis. Specific Aim 2: We will validate the screen by inactivating the human homologs in HeLa cells and will further investigate the role of these host genes in C. trachomatis infection. Together, these studies will significantly advance our knowledge of infectious disease pathogenesis and pave the way for new therapies and vaccines.
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资助金额:$74.24万
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依托单位:
Decoding the Chlamydia inclusion membrane protein-host protein interactome
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依托单位:
High throughput proteomics to dissect Chlamydia-host cell interactions
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依托单位:
High throughput proteomics to dissect Chlamydia-host cell interactions
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资助金额:$19.76万
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依托单位:
Proteomic approach to identify mediators of PI3K activation by P. aeruginosa
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财政年份:2008
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Interaction of Pseudomonas Aeroginosa with the Mucosal Barrier
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依托单位:
海外基金