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STRUCTURE AND FUNCTION OF PEPTIDE TRANSPORTERS

STRUCTURE AND FUNCTION OF PEPTIDE TRANSPORTERS
肽转运蛋白的结构和功能
批准号:
5200550
负责人:
J W YEWDELL
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
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中文摘要
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英文摘要
CD8+ T cells (T/CD8+) play an important role in controlling virus infections. T/CD8+ recognize peptides of 8 to 10 residues derived from viral proteins located in the cytosol of virus infected cells. These peptides are recognized in a complex with class I molecules encoded by the major histocompatibility complex (MHC). In the past 3 years it was discovered that the MHC also encodes two molecules, termed TAP1 and TAP2, that combine in a 1:1 ratio to create a complex that specifically transports peptides from the cytosol into the endoplasmic reticulum (ER). Human TAP genes display at least some limited polymorphism. The existence of these peptide pumps and their polymorphism raises a number of important questions: Where in the cells are the pumps located? Do the pumps influence the types of peptides presented by class I molecules? Are the pumps tethered to the proteases that produce antigenic peptides in the cytosol? How do the pumps work? Are there individuals with immune deficiencies based on mutations in the TAP genes? Can cells transport peptides via other mechanisms? To help characterize the structure and function of the TAP genes we have created recombinant vaccinia viruses (rVV) that express either TAP1 (VV-TAP1/h), TAP2 (VV- TAP2/h), or TAP1 and TAP2 (VV-TAP[1&2]/h). We have demonstrated that each of rVVs express functional subunits, or in the case of the VV- TAP[1&2]/h, a functional transporter. Using this panel of rVVs we have studied the assembly, intracellular location, and biochemical properties of TAP1 and TAP2, and in collaboration with other laboratories, demonstrated that a herpesvirus protein binds human TAP and blocks its function.
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ANTIGEN PROCESSING IN LOWER EUKARYOTIC CELLS
ASSEMBLY, INTRACELLULAR TRAFFICKING, AND FUNCTION OF MHC CLASS IB
PROCESSING OF VIRAL PROTEINS FOR T CELL RECOGNITION
FOLDING, ASSEMBLY, AND TRANSPORT OF VIRAL GLYCOPROTEINS
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