Intestinal intraepithelial lymphocytes (IELs) are a phenotypically distinct T cell population of unknown function. The majority of human intestinal IELs express the alpha-beta T cell antigen receptor (TCR), the CD8 accessory molecule and the CD45RO antigen, suggesting that they are major histocompatibility complex (MHC) class I restricted memory T cells. Recent studies of the TCRalpha and beta chains expressed by these cells have shown marked skewing towards one or several variable region genes in individual donors and revealed the presence of dominant IEL clones. Several lines of evidence suggest that the MHC class I-like CD1 molecules, which are expressed by intestinal epithelial cells, may function as antigen presenting molecules for intestinal IELs. Preliminary evidence indicates that CD1 expression may be modified on abnormal epithelial cells. These modifications include changes in CD1d glycosylation, changes in CD1 association with beta2microglobulin and the induction of CDla, b or c expression. Alternate forms of CD1 are, therefore, potential target antigens for IELs involved in immunosurveillence of the intestinal mucosa and other mucosal surfaces. The long term goal of this work is to determine the normal function of mucosal T cells and determine the role these cells may play in some diseases. The major goals of this proposal are to identify dominant T cell clones in the intestine, determine the origin of these clones and identify their physiological ligands.
The specific aims are: 1) Determine the TCR repertoire and origin of dominant IEL and lamina propria lymphocyte (LPL) clones in the small and large intestine. 2) Determine the structure of the CD1d molecules expressed by normal human intestinal epithelial cells and determine whether distinct forms of CD1 are expressed on abnormal epithelial cells. 3) Determine whether members of the CD1 gene family are the physiological ligands for dominant IEL clones or LPL clones.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
1R01AI033911-01
Application #
3148936
Study Section
Immunobiology Study Section (IMB)
Project Start
1993-05-01
Project End
1996-04-30
Budget Start
1993-05-01
Budget End
1994-04-30
Support Year
1
Fiscal Year
1993
Total Cost
Indirect Cost
Name
Beth Israel Deaconess Medical Center
Department
Type
DUNS #
076593722
City
Boston
State
MA
Country
United States
Zip Code
02215
Sonoda, K H; Faunce, D E; Taniguchi, M et al. (2001) NK T cell-derived IL-10 is essential for the differentiation of antigen-specific T regulatory cells in systemic tolerance. J Immunol 166:42-50
Saubermann, L J; Beck, P; De Jong, Y P et al. (2000) Activation of natural killer T cells by alpha-galactosylceramide in the presence of CD1d provides protection against colitis in mice. Gastroenterology 119:119-28
Rodionov, D G; Nordeng, T W; Pedersen, K et al. (1999) A critical tyrosine residue in the cytoplasmic tail is important for CD1d internalization but not for its basolateral sorting in MDCK cells. J Immunol 162:1488-95
Sonoda, K H; Exley, M; Snapper, S et al. (1999) CD1-reactive natural killer T cells are required for development of systemic tolerance through an immune-privileged site. J Exp Med 190:1215-26
Morales, V M; Christ, A; Watt, S M et al. (1999) Regulation of human intestinal intraepithelial lymphocyte cytolytic function by biliary glycoprotein (CD66a). J Immunol 163:1363-70
Probert, C S; Aitken, E W; Saubermann, L J et al. (1998) T-cell receptor usage in the intestine. Chem Immunol 71:27-39
Exley, M; Porcelli, S; Furman, M et al. (1998) CD161 (NKR-P1A) costimulation of CD1d-dependent activation of human T cells expressing invariant V alpha 24 J alpha Q T cell receptor alpha chains. J Exp Med 188:867-76
Chott, A; Gerdes, D; Spooner, A et al. (1997) Intraepithelial lymphocytes in normal human intestine do not express proteins associated with cytolytic function. Am J Pathol 151:435-42
Probert, C S; Christ, A D; Saubermann, L J et al. (1997) Analysis of human common bile duct-associated T cells: evidence for oligoclonality, T cell clonal persistence, and epithelial cell recognition. J Immunol 158:1941-8
Exley, M; Garcia, J; Balk, S P et al. (1997) Requirements for CD1d recognition by human invariant Valpha24+ CD4-CD8- T cells. J Exp Med 186:109-20

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