The aim of this proposal is to gain a better understanding of the structure and binding properties of the murine T cell receptor and to investigate the role of thymic selection in its expression. Initially, we will focus on characterizing the recently isolated alpha chain of the receptor with respect to genomic organization and the pattern of framework and hypervariable residues in the variable region sequences of different cDNA clones. We will also examine the relative expression of alpha and beta chains in different thymic subpopulations using cell separation procedures and hybridoma technology. In particular, we will follow up preliminary indications that alpha chain genes are expressed after beta chain genes, perhaps enabling us to define a """"""""pre-T"""""""" cell phenotype analogous to that established in B lymphocytes. Subsequent work will involve efforts to transfer a given antigen-MHC specificity into T cell tumor lines using rearranged genomic alpha and beta chain genomic DNAs and standard methodologies. If successful, this will provide an easily manipulatable system for studying different components of the receptor binding site and other important structural features of the receptor complex. We will also use mice which are transgenic for alpha and beta chains of defined specificity to ask questions about expression and thymic selection in mice with compatible and incompatible MHC haplo-types. Lastly, we will try a number of expression systems and truncation of the trans-membrane portion of the two chains in an effort to produce large quantities of soluble heterodimer. This material will be used for binding studies to try and define what T cell receptors can """"""""see"""""""" and with what affinity. This will also provide the necessary starting material for protein crystallography and subsequent structural studies.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI022511-05
Application #
3133674
Study Section
Allergy and Immunology Study Section (ALY)
Project Start
1985-07-01
Project End
1990-06-30
Budget Start
1989-07-01
Budget End
1990-06-30
Support Year
5
Fiscal Year
1989
Total Cost
Indirect Cost
Name
Stanford University
Department
Type
Schools of Medicine
DUNS #
800771545
City
Stanford
State
CA
Country
United States
Zip Code
94305
Lund, Peder J; Elias, Joshua E; Davis, Mark M (2016) Global Analysis of O-GlcNAc Glycoproteins in Activated Human T Cells. J Immunol 197:3086-3098
Wang, Feng; Beck-GarcĂ­a, Katharina; Zorzin, Carina et al. (2016) Inhibition of T cell receptor signaling by cholesterol sulfate, a naturally occurring derivative of membrane cholesterol. Nat Immunol 17:844-50
Ueda, Hironori; Zhou, Jie; Xie, Jianming et al. (2015) Distinct Roles of Cytoskeletal Components in Immunological Synapse Formation and Directed Secretion. J Immunol 195:4117-25
Birnbaum, Michael E; Mendoza, Juan L; Sethi, Dhruv K et al. (2014) Deconstructing the peptide-MHC specificity of T cell recognition. Cell 157:1073-87
Newell, Evan W; Davis, Mark M (2014) Beyond model antigens: high-dimensional methods for the analysis of antigen-specific T cells. Nat Biotechnol 32:149-57
Huang, Jun; Brameshuber, Mario; Zeng, Xun et al. (2013) A single peptide-major histocompatibility complex ligand triggers digital cytokine secretion in CD4(+) T cells. Immunity 39:846-57
De Boer, Rob J; Perelson, Alan S (2013) Quantifying T lymphocyte turnover. J Theor Biol 327:45-87
Guy, Clifford S; Vignali, Kate M; Temirov, Jamshid et al. (2013) Distinct TCR signaling pathways drive proliferation and cytokine production in T cells. Nat Immunol 14:262-70
Xie, Jianming; Huppa, Johannes B; Newell, Evan W et al. (2012) Photocrosslinkable pMHC monomers stain T cells specifically and cause ligand-bound TCRs to be 'preferentially' transported to the cSMAC. Nat Immunol 13:674-80
Lillemeier, Bjorn F; Davis, Mark M (2011) Probing the plasma membrane structure of immune cells through the analysis of membrane sheets by electron microscopy. Methods Mol Biol 748:169-82

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