The Syk and ZAP-70 SH2-containing tyrosine kinases are implicated in pre-T cell receptor signaling
Author(s) -
Alec M. Cheng,
Izumi Negishi,
Steven J. Anderson,
Andrew C. Chan,
Joseph B. Bolen,
Dennis Y. Loh,
Tony Pawson
Publication year - 1997
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.94.18.9797
Subject(s) - syk , t cell receptor , cd8 , microbiology and biotechnology , tyrosine kinase , biology , thymocyte , zap70 , tyrosine phosphorylation , receptor tyrosine kinase , sh2 domain , signal transduction , t cell , tyrosine , immunoreceptor tyrosine based activation motif , kinase , cd3 , phosphorylation , antigen , immunology , immune system , biochemistry
An early stage in thymocyte development, after rearrangement of the β chain genes of the T cell receptor (TCR), involves expression of the pre-TCR complex and accompanying differentiation of CD4− CD8− double negative (DN) cells to CD4+ CD8+ double positive (DP) cells. The ZAP-70 and Syk tyrosine kinases each contain two N-terminal SH2 domains that bind phosphorylated motifs in antigen receptor subunits and are implicated in pre-T receptor signaling. However, mice deficient in either ZAP-70 or Syk have no defect in the formation of DP thymocytes. Here we show that, in mice lacking both Syk and ZAP-70, DN thymocytes undergo β chain gene rearrangement but fail to initiate clonal expansion and are incapable of differentiating into DP cells after expression of the pre-TCR. These data suggest that the ZAP-70 and Syk tyrosine kinases have crucial but overlapping functions in signaling from the pre-TCR and hence in early thymocyte development.
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