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Structure-function studies of alpha- and flaviviruses

Structure-function studies of alpha- and flaviviruses
α病毒和黄病毒的结构功能研究
批准号:
7695362
负责人:
Richard J. Kuhn
金额:
$198.4万
依托单位:
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 2011-08-31

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英文摘要
Program Director/Principal Investigator (Last, First, Middle): Kuhn, Richard J. 2 P01 AI055672-06A1 ABSTRACT The current understanding of alphavirus and flavivirus life cycles at the molecular level is incomplete because we lack a structural foundation for the viral and host proteins involved in RNA replication, genome packaging and particle assembly. Viruses within these two groups pose significant risks to large segments of the population and methods for controlling infection and disease are few. Therefore, we will continue our systematic collaborative investigation that will provide a comparative approach to the structure and function of the virally encoded proteins representing pathogens within these two groups. We will shift our emphasis to encompass not only viral proteins but also host proteins and the appropriate complexes between host and pathogen. The tools proposed for studying the structure and function of these viral proteins are varied and multidisciplinary. We previously placed a heavy emphasis on X-ray crystallography of individual viral proteins and intact viruses (Michael Rossmann, Jan.et Smith). In addition to our emphasis on high-resolution structures from crystallography, a key role is played by Tim Baker, Wen Jiang, and Michael Rossmann in the cryoelectron microscopy study of viruses, complexes of receptors and antibodies, and intermediates in their assembly/disassembly. Electron tomography and immuno-electron microscopy (Richard Kuhn, Wen Jiang, Michael Rossmann) will also be employed as a means to image subcellular structures induced and/or utilized during virus infection. Functional biochemical and genetic analyses (Richard Kuhn, Janet Smith) will complement and support the structural studies. Site-directed mutagenesis and protein interaction approaches to explore interactions found, or hypothesized, on the basis of structure determination will be emphasized to probe various aspects of the virus life cycle. These approaches will be integrated and an iterative process will be designed for extracting optimal information and refining experimental directions. The synergy of individual projects, which employ crystallography, cryo-electron microscopy, biochemistry, molecular biology, and genetics, in a highly collaborative environment is a critical strength of our proposal. This structural-functional approach should provide a wealth of information for understanding the life cycle and pathogenesis of these viruses that will be invaluable in the design of vaccines and antivirals, as well as providing a knowledge base for understanding virus pathogenesis.
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