The long term goal of these studies is to determine constraints in the T cell recognition of protein which might be imposed by the structure of the antigenic moiety. To further this goal, in the next funding period of this grant, studies on the structural constraints of class II restricted T helper cell recognition of peptide antigens will be continued, and extended to the T cell recognition of a structurally rigid component of hemoprotein antigens, the heme prosthetic group, will also be examined. The first specific aim of these studies is to continue elucidating the role of electrostatic interactions in peptide/class II binding. The second specific aim is to examine the conformational constraints of class I MHC presentation essentially using the principles of peptide design and synthesis that were used in our studies on class II recognition during the last two funding periods. This will require the establishment of a class I restricted model antigen system. This will be done by producing class I restricted T cells to hen egg lysozyme by in vitro peptide priming and in vivo priming with transfected cell lines. Finally, molecular differences between the T cell recognition of peptide antigens, which can adopt multiple conformations, and an antigen, the heme moiety of hemoproteins, which has strong conformational constraints, will be explored. The response to heme is of high precursor frequency in the peripheral T cell repertoire of I-As and I-Ak bearing naive mice, thus the cause of this high precursor frequency will also be examined with regard to (a) the mechanism by which heme binds to MHC and stabilizes the interaction of APC with naive T cells and (b) possible frequency in the peripheral repertoire of responder strains.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM031841-09
Application #
3280225
Study Section
Allergy and Immunology Study Section (ALY)
Project Start
1988-07-01
Project End
1994-12-31
Budget Start
1992-01-01
Budget End
1992-12-31
Support Year
9
Fiscal Year
1992
Total Cost
Indirect Cost
Name
University of Pennsylvania
Department
Type
Schools of Medicine
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Matthews, A E; Weiss, S R; Lavi, E et al. (2001) The role of B cells in mouse hepatitis virus infection and pathology. Adv Exp Med Biol 494:363-8
Argyris, E G; Vanderkooi, J M; Venkateswaran, P S et al. (1999) The connection domain is implicated in metalloporphyrin binding and inhibition of HIV reverse transcriptase. J Biol Chem 274:1549-56
Saito, N G; Chang, H C; Paterson, Y (1999) Recognition of an MHC class I-restricted antigenic peptide can be modulated by para-substitution of its buried tyrosine residues in a TCR-specific manner. J Immunol 162:5998-6008
Mylvaganam, S E; Paterson, Y; Getzoff, E D (1998) Structural basis for the binding of an anti-cytochrome c antibody to its antigen: crystal structures of FabE8-cytochrome c complex to 1.8 A resolution and FabE8 to 2.26 A resolution. J Mol Biol 281:301-22
Mata, M; Travers, P J; Liu, Q et al. (1998) The MHC class I-restricted immune response to HIV-gag in BALB/c mice selects a single epitope that does not have a predictable MHC-binding motif and binds to Kd through interactions between a glutamine at P3 and pocket D. J Immunol 161:2985-93
Sutherland, R M; Chua, M M; Lavi, E et al. (1997) CD4+ and CD8+ T cells are not major effectors of mouse hepatitis virus A59-induced demyelinating disease. J Neurovirol 3:225-8
Chunduru, S K; Sutherland, R M; Stewart, G A et al. (1996) Exploitation of the Vbeta8.2 T cell receptor in protection against experimental autoimmune encephalomyelitis using a live vaccinia virus vector. J Immunol 156:4940-5
Gombold, J L; Sutherland, R M; Lavi, E et al. (1995) Mouse hepatitis virus A59-induced demyelination can occur in the absence of CD8+ T cells. Microb Pathog 18:211-21
Pan, Z K; Ikonomidis, G; Pardoll, D et al. (1995) Regression of established tumors in mice mediated by the oral administration of a recombinant Listeria monocytogenes vaccine. Cancer Res 55:4776-9
Sutherland, R M; Brassell, S; Liu, Q et al. (1995) The self antigen heme evades immune recognition by sequestration in some hemoproteins. Eur J Immunol 25:1810-4

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