Publication | Open Access
Cutting Edge: Tyrosine-Independent Transmission of Inhibitory Signals by CTLA-4
50
Citations
21
References
2000
Year
ImmunologyImmune RegulationImmunologic MechanismCd4 T Cell ResponsesCellular PhysiologyMurine Ctla-4Receptor Tyrosine KinaseTyrosine-independent TransmissionIl-2 SecretionCell SignalingInhibitory ActivityReceptor (Biochemistry)Mechanism Of ActionT Cell ImmunityPharmacologyCell BiologyT Cell BiologySignal TransductionJurkat CellsCellular Immune ResponseCellular BiochemistryMedicine
CTLA-4 is an important inhibitor of T cell activation. We used Jurkat cells expressing mutants of murine CTLA-4 to study the structural requirements for inhibitory signaling. We find that signals for the inhibition of IL-2 secretion are delivered efficiently by a CTLA-4 mutant in which both cytoplasmic tyrosines have been replaced by phenylalanines. A CTLA-4 mutant that lacks the carboxyl-terminal half of the intracellular domain also retains the ability to inhibit, but deletion of an additional 11 aa completely abrogates that capability. We conclude that delivery of an inhibitory signal requires the membrane-proximal region of the CTLA-4 cytoplasmic domain and does not depend upon the tyrosine phosphorylation of CTLA-4.
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