Abstract

An investigation into the role of CD45 isoforms in T cell antigen receptor signal transduction was carried out by transfecting CD45-negative CD4(+)CD8(+) HPB-ALL T cells with the CD45R0, CD45RBC, and CD45RABC isoforms. Fluorescence resonance energy transfer analysis showed that the CD45R0 isoform, but not the CD45RBC or CD45RABC isoforms, was found as homodimers and also preferentially associated with CD4 and CD8 at the cell-surface. A comparison was therefore made of T cell antigen receptor signaling between sub-clones expressing either CD45R0 or CD45RBC. Under basal conditions CD4-associated p56(lck) tyrosine kinase activity and cellular protein tyrosine phosphorylation levels were higher in the CD45R0(+) than in the CD45RBC(+) sub-clones. Upon CD3-CD4 ligation, TCR-zeta phosphorylation, ZAP-70 recruitment to the p21/p23 TCR-zeta phosphoisomers, ZAP-70 phosphorylation, as well as p56(lck), c-Cbl and Slp-76 phosphorylation, were all markedly increased in CD45R0(+) compared with CD45RBC(+) cells. T cell antigen receptor (TCR) stimulation alone also promoted c-Cbl phosphorylation in CD45R0(+) but not in CD45RBC(+) cells. Our results are consistent with a model in which association of CD45R0 with CD4 generates a more active pool of CD4-associated p56(lck) kinase molecules. Upon CD3-CD4 co-ligation, the active p56(lck) increases the intensity of T cell antigen receptor signal transduction coupling by promoting TCR-zeta chain phosphorylation and ZAP-70 recruitment.

Highlights

  • An investigation into the role of CD45 isoforms in T cell antigen receptor signal transduction was carried out by transfecting CD45-negative CD4؉CD8؉ HPB-ALL T cells with the CD45R0, CD45RBC, and CD45RABC isoforms

  • We have previously shown that CD3-CD4 co-ligation greatly amplifies protein tyrosine phosphorylation events in HPB-ALL cells in comparison with CD3-CD3 ligation [31], presumably by enforced juxtaposition of CD4-p56lck with its T cell antigen receptor (TCR) polypeptide and ZAP-70 substrates

  • Overall these results show that the intensity of TCR signal transduction coupling was much greater when CD45R0ϩ rather than CD45RBCϩ was expressed at the cell-surface

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Summary

Introduction

An investigation into the role of CD45 isoforms in T cell antigen receptor signal transduction was carried out by transfecting CD45-negative CD4؉CD8؉ HPB-ALL T cells with the CD45R0, CD45RBC, and CD45RABC isoforms. Initial experiments (data not shown) revealed that upon TCR stimulation or CD3-CD4 ligation, protein tyrosine phosphorylation and other signals were greatly reduced in both of the CD45R0ϩ sub-clones in comparison with cells expressing either CD45RABC or CD45RBC.

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