<HashMap><database>biostudies-other</database><scores/><additional><omics_type>Unknown</omics_type><volume>89(19)</volume><submitter>Natarajan K</submitter><journal>Proceedings of the National Academy of Sciences of the United States of America</journal><pagination>8874-8</pagination><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-EPMC50026</full_dataset_link><abstract>Dominant expression of T-cell receptor (TCR) alpha or beta chain variable region (V alpha or V beta) gene families has been observed in the T-cell response to some conventional peptide antigens. Current models for the interaction of TCR V region elements with different determinants of a major histocompatibility complex (MHC)-peptide complex, the normal TCR ligand, suggest that the TCR V-J junctional region (CDR3, where J is joining) is the primary contact with a peptide epitope and that other TCR V region segments may interact directly with neighboring MHC determinants. This suggests that V alpha or V beta dominance in a specific response can be MHC-selected. In this case, if related peptides bind to an MHC molecule in a similar orientation, they could select for identical V alpha or V beta dominance even if they are noncrossreactive at the level of T-cell activation. We have screened for this possibility by introducing minimal conservative substitutions in a synthetic peptide, YYEELLKYYEELLK, that is presented to T cells in association with an uncommon A beta E alpha d mixed Ia isotype. We report here that the peptide variant FFEELLKFFEELLK is noncrossreactive with YYEELLKYYEELLK but appears to preserve the same MHC binding motif since T-cell responses are restricted to the same mixed A beta E alpha isotype. Although the two peptides are noncrossreactive in either direction, the same members of the V alpha 4 gene family are dominantly expressed in T cells specific for either peptide. We conclude that the similar topography of the two MHC-peptide complexes gives functional significance to a unique A beta E alpha determinant that selects for V alpha 4 dominance.</abstract><repository>biostudies-other</repository><pmcid>PMC50026</pmcid><data_source>Europe PMC</data_source><pubmed_authors>Burstyn D</pubmed_authors><pubmed_authors>Natarajan K</pubmed_authors><pubmed_authors>Zauderer M</pubmed_authors></additional><is_claimable>false</is_claimable><name>Major histocompatibility complex determinants select T-cell receptor alpha chain variable region dominance in a peptide-specific response.</name><description>Dominant expression of T-cell receptor (TCR) alpha or beta chain variable region (V alpha or V beta) gene families has been observed in the T-cell response to some conventional peptide antigens. Current models for the interaction of TCR V region elements with different determinants of a major histocompatibility complex (MHC)-peptide complex, the normal TCR ligand, suggest that the TCR V-J junctional region (CDR3, where J is joining) is the primary contact with a peptide epitope and that other TCR V region segments may interact directly with neighboring MHC determinants. This suggests that V alpha or V beta dominance in a specific response can be MHC-selected. In this case, if related peptides bind to an MHC molecule in a similar orientation, they could select for identical V alpha or V beta dominance even if they are noncrossreactive at the level of T-cell activation. We have screened for this possibility by introducing minimal conservative substitutions in a synthetic peptide, YYEELLKYYEELLK, that is presented to T cells in association with an uncommon A beta E alpha d mixed Ia isotype. We report here that the peptide variant FFEELLKFFEELLK is noncrossreactive with YYEELLKYYEELLK but appears to preserve the same MHC binding motif since T-cell responses are restricted to the same mixed A beta E alpha isotype. Although the two peptides are noncrossreactive in either direction, the same members of the V alpha 4 gene family are dominantly expressed in T cells specific for either peptide. We conclude that the similar topography of the two MHC-peptide complexes gives functional significance to a unique A beta E alpha determinant that selects for V alpha 4 dominance.</description><dates><release>1992-01-01T00:00:00Z</release><publication>1992 Oct</publication><modification>2019-03-27T00:18:09Z</modification><creation>2019-03-27T00:18:09Z</creation></dates><accession>S-EPMC50026</accession><cross_references><gen>M84653</gen><pubmed>1384036</pubmed><doi>10.1073/pnas.89.19.8874 </doi></cross_references></HashMap>