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BIOCHEMISTRY AND REGULATION OF V(D)J RECOMBINATION

BIOCHEMISTRY AND REGULATION OF V(D)J RECOMBINATION
V(D)J 重组的生物化学和调控
批准号:
2672832
负责人:
ZHEN-QIANG PAN
金额:
$16.58万
依托单位国家:
美国
项目类别:
财政年份:
1997
资助国家:
美国
项目状态:
已结题
起止时间:
1997-04-01 至 2001-03-31

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中文摘要
翻译
描述(改编自研究者摘要):V(D)J位点特异性
英文摘要
DESCRIPTION (Adapted from the investigator's abstract): V(D)J site-specific recombination is the process that establishes diversity of the immune repertoire by mediating the somatic assembly of the antigen receptor gene segments. Mutations within the components that catalyze the V(D)J reaction result in severe immunodeficiencies. Two of these components, the recombination activating proteins, Rag-1 and Rag-2, are the key lymphoid specific activities that initiate the catalysis of the process. In addition, several ubiquitous, DNA repair activities have been identified that also participate in the V(D)J process. The long-term objectives of this application are to elucidate the biochemistry of V(D)J recombination. The specific aims are: Aim 1 will address the structural domains and the biochemical properties of Rag-1 and Rag-2. Aim 2 will analyze in detail the assembly and reaction kinetics of the individual components that are required in order to form a V(D)J recombination competent complex. Studies in aims 1 and 2 will be based on conventional biochemical techniques and modern technology using a biosensor instrument that can monitor interactions between macromolecules in real time. Purified Rag-1, Rag-2 and ubiquitous DNA repair activities will be assayed for their DNA binding and protein/protein interaction activities using footprinting, cross-linking and biosensor assays. In addition, the role of the identified domains will be tested in vivo using genetic approaches. The DNA binding domain of Rag-1 will be crystallized in order to understand its mode of binding. Aim 3 will address the catalytic domain of Rag-1/Rag-2 and how the Rag complex cleaves the DNA with specificity. These experiments will employ genetic analyses, chemical modifications and mass spectroscopy techniques using purified Rag-1 and Rag-2 proteins. Studies on the biochemistry and regulation of V(D)J recombination are of profound significance for our understanding of how the immune system is established and how immunodeficiencies in humans can be generated by the stochastic inactivation of the V(D)J recombination machinery. In addition, V(D)J recombination has been implicated in oncogenesis and the translocation of certain oncogenes. The studies described in this proposal may help us design reagents and experimental protocols to diagnose many debilitating or fatal diseases of the human lymphopoietic system such as, forms of severely combined immunodeficiencies, leukemias and lymphomas. A subset of these diseases may be treatable by gene therapy.
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