CD8 enhances formation of stable T-cell receptor/MHC class I molecule complexes
T-cell antigen receptors (TCR) generally interact with moderate affinity with the complex formed by major histocompatibility complex (MHC) molecules and foreign peptides. MHC/TCR recognition is followed by the generation of a signal to the T cell through a monomorphic multicomponent system that incl...
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Veröffentlicht in: | Nature (London) 1996-12, Vol.384 (6609), p.577-581 |
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creator | Garcia, K. Christopher Scott, Christopher A Brunmark, Anders Carbone, Francis R Peterson, Per A Wilson, Ian A Teyton, Luc |
description | T-cell antigen receptors (TCR) generally interact with moderate affinity with the complex formed by major histocompatibility complex (MHC) molecules and foreign peptides. MHC/TCR recognition is followed by the generation of a signal to the T cell through a monomorphic multicomponent system that includes the CD3 complex and accessory molecules such as CD4 and CD8. The interaction between the extracellular domains of MHC and TCR molecules, and the interaction of MHC and CD4/CD8 molecules, have been considered to occur independently of one another. We report here that the affinity of CD8 dimers for MHC class I molecules is independent of haplotype and peptide content, and that the affinity of the TCR for its specific ligand is enhanced through a reduced 'off' rate in the presence of either CD8alpha alpha homo- or CD8alpha beta heterodimers. Moreover, CD8 seems to help recognition of the specific MHC-peptide complex either by guiding an energetically favourable docking of TCR onto MHC, or by inducing conformational changes in the MHC complex that can augment the TCR/MHC-peptide interaction. CD8 should therefore be considered as an active participant in the T-cell recognition complex, rather than simply as an accessory molecule. |
doi_str_mv | 10.1038/384577a0 |
format | Article |
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Christopher ; Scott, Christopher A ; Brunmark, Anders ; Carbone, Francis R ; Peterson, Per A ; Wilson, Ian A ; Teyton, Luc</creator><creatorcontrib>Garcia, K. Christopher ; Scott, Christopher A ; Brunmark, Anders ; Carbone, Francis R ; Peterson, Per A ; Wilson, Ian A ; Teyton, Luc</creatorcontrib><description>T-cell antigen receptors (TCR) generally interact with moderate affinity with the complex formed by major histocompatibility complex (MHC) molecules and foreign peptides. MHC/TCR recognition is followed by the generation of a signal to the T cell through a monomorphic multicomponent system that includes the CD3 complex and accessory molecules such as CD4 and CD8. The interaction between the extracellular domains of MHC and TCR molecules, and the interaction of MHC and CD4/CD8 molecules, have been considered to occur independently of one another. We report here that the affinity of CD8 dimers for MHC class I molecules is independent of haplotype and peptide content, and that the affinity of the TCR for its specific ligand is enhanced through a reduced 'off' rate in the presence of either CD8alpha alpha homo- or CD8alpha beta heterodimers. Moreover, CD8 seems to help recognition of the specific MHC-peptide complex either by guiding an energetically favourable docking of TCR onto MHC, or by inducing conformational changes in the MHC complex that can augment the TCR/MHC-peptide interaction. CD8 should therefore be considered as an active participant in the T-cell recognition complex, rather than simply as an accessory molecule.</description><identifier>ISSN: 0028-0836</identifier><identifier>EISSN: 1476-4687</identifier><identifier>DOI: 10.1038/384577a0</identifier><identifier>PMID: 8955273</identifier><identifier>CODEN: NATUAS</identifier><language>eng</language><publisher>London: Nature Publishing</publisher><subject>Animals ; Binding Sites ; Biological and medical sciences ; CD8 Antigens - chemistry ; CD8 Antigens - metabolism ; Cell Line ; Cellular biology ; Dimerization ; Drosophila melanogaster ; Electrophoresis, Polyacrylamide Gel ; Fundamental and applied biological sciences. Psychology ; Fundamental immunology ; H-2 Antigens - chemistry ; H-2 Antigens - metabolism ; Histocompatibility Antigen H-2D ; Histocompatibility Antigens Class II - metabolism ; Immunobiology ; Lymphoid cells: ontogeny, maturation, markers, receptors, circulation and recirculation ; Mice ; Models, Chemical ; Molecular biology ; Peptides ; Peptides - chemistry ; Peptides - immunology ; Peptides - metabolism ; Protein Conformation ; Receptors, Antigen, T-Cell, alpha-beta - chemistry ; Receptors, Antigen, T-Cell, alpha-beta - metabolism</subject><ispartof>Nature (London), 1996-12, Vol.384 (6609), p.577-581</ispartof><rights>1997 INIST-CNRS</rights><rights>Copyright Macmillan Journals Ltd. 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Christopher</au><au>Scott, Christopher A</au><au>Brunmark, Anders</au><au>Carbone, Francis R</au><au>Peterson, Per A</au><au>Wilson, Ian A</au><au>Teyton, Luc</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>CD8 enhances formation of stable T-cell receptor/MHC class I molecule complexes</atitle><jtitle>Nature (London)</jtitle><addtitle>Nature</addtitle><date>1996-12-12</date><risdate>1996</risdate><volume>384</volume><issue>6609</issue><spage>577</spage><epage>581</epage><pages>577-581</pages><issn>0028-0836</issn><eissn>1476-4687</eissn><coden>NATUAS</coden><abstract>T-cell antigen receptors (TCR) generally interact with moderate affinity with the complex formed by major histocompatibility complex (MHC) molecules and foreign peptides. MHC/TCR recognition is followed by the generation of a signal to the T cell through a monomorphic multicomponent system that includes the CD3 complex and accessory molecules such as CD4 and CD8. The interaction between the extracellular domains of MHC and TCR molecules, and the interaction of MHC and CD4/CD8 molecules, have been considered to occur independently of one another. We report here that the affinity of CD8 dimers for MHC class I molecules is independent of haplotype and peptide content, and that the affinity of the TCR for its specific ligand is enhanced through a reduced 'off' rate in the presence of either CD8alpha alpha homo- or CD8alpha beta heterodimers. Moreover, CD8 seems to help recognition of the specific MHC-peptide complex either by guiding an energetically favourable docking of TCR onto MHC, or by inducing conformational changes in the MHC complex that can augment the TCR/MHC-peptide interaction. CD8 should therefore be considered as an active participant in the T-cell recognition complex, rather than simply as an accessory molecule.</abstract><cop>London</cop><pub>Nature Publishing</pub><pmid>8955273</pmid><doi>10.1038/384577a0</doi><tpages>5</tpages></addata></record> |
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subjects | Animals Binding Sites Biological and medical sciences CD8 Antigens - chemistry CD8 Antigens - metabolism Cell Line Cellular biology Dimerization Drosophila melanogaster Electrophoresis, Polyacrylamide Gel Fundamental and applied biological sciences. Psychology Fundamental immunology H-2 Antigens - chemistry H-2 Antigens - metabolism Histocompatibility Antigen H-2D Histocompatibility Antigens Class II - metabolism Immunobiology Lymphoid cells: ontogeny, maturation, markers, receptors, circulation and recirculation Mice Models, Chemical Molecular biology Peptides Peptides - chemistry Peptides - immunology Peptides - metabolism Protein Conformation Receptors, Antigen, T-Cell, alpha-beta - chemistry Receptors, Antigen, T-Cell, alpha-beta - metabolism |
title | CD8 enhances formation of stable T-cell receptor/MHC class I molecule complexes |
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