c-Cbl and Cbl-b regulate T cell responsiveness by promoting ligand-induced TCR down-modulation
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- 4 November 2002
- journal article
- research article
- Published by Springer Nature in Nature Immunology
- Vol. 3 (12) , 1192-1199
- https://doi.org/10.1038/ni855
Abstract
How Cbl family proteins regulate T cell responses is unclear. We found that c-Cbl Cbl-b double knock-out (dKO) T cells became hyperresponsive upon anti-CD3 stimulation, even though the major T cell antigen receptor (TCR) signaling pathways were not enhanced. The dKO T cells did not down-modulate surface TCR after ligand engagement, which resulted in sustained TCR signaling. However, these cells showed normal ligand-independent TCR internalization, and trafficking of internalized TCR to the lysosome compartment after ligand engagement was reduced. These findings show that Cbl family proteins negatively regulate T cell activation by promoting clearance of engaged TCR from the cell surface, a process that is apparently essential for the termination of TCR signals.Keywords
This publication has 39 references indexed in Scilit:
- Antigen decoding by T lymphocytes: from synapses to fate determinationNature Immunology, 2001
- Requirement for the SLP-76 Adaptor GADS in T Cell DevelopmentScience, 2001
- Disruption of T cell signaling networks and development by Grb2 haploid insufficiencyNature Immunology, 2001
- Lymphocytes with a complex: adapter proteins in antigen receptor signalingImmunology Today, 2000
- From synapses to immunological memory: the role of sustained T cell stimulationCurrent Opinion in Immunology, 2000
- INTEGRATION OF T CELL RECEPTOR–DEPENDENT SIGNALING PATHWAYS BY ADAPTER PROTEINSAnnual Review of Immunology, 1999
- Essential Role of LAT in T Cell DevelopmentImmunity, 1999
- Requirement for the Leukocyte-Specific Adapter Protein SLP-76 for Normal T Cell DevelopmentScience, 1998
- Impaired Viability and Profound Block in Thymocyte Development in Mice Lacking the Adaptor Protein SLP-76Cell, 1998
- Signal transduction by lymphocyte antigen receptorsCell, 1994