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February 1, 1987Molecular and Cellular Biology66 citationsOpen Access

Stimulation of T Cells Through the CD3/T-Cell Receptor Complex: Role of Cytoplasmic Calcium, Protein Kinase C Translocation, and Phosphorylation of pp60c-src in the Activation Pathway

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JLJeffrey A. LedbetterLGL E GentryCJCarl H. June

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Abstract

Stimulation of T cells or the Jurkat T-cell line with soluble antibodies to the CD3/T-cell receptor complex causes mobilization of cytoplasmic Ca2+, which is blocked by pertussis toxin but not by ethylene glycol-bis(beta-aminoethyl ether)-N,N,N',N'-tetraacetic acid, and translocation of protein kinase C activity from the cytoplasm to the membrane. Such stimulation also causes phosphorylation of pp60c-src at an amino-terminal serine residue. These activities are consistent with induction of phosphatidylinositol metabolism after antibody binding. Anti-CD3 stimulation with antibody in solution, however, does not cause Jurkat cells to release interleukin 2 and blocks rather than induces proliferation of T cells. Induction of interleukin 2 production by Jurkat cells and proliferation by normal T cells requires anti-CD3 stimulation with antibody on a solid support, such as Sepharose beads or a plastic dish. Thus, we examined phosphorylation of pp60c-src after stimulation of Jurkat cells with anti-CD3 in solution or on solid phase. Both of these caused serine phosphorylation of pp60c-src that was indistinguishable even after 4 h of stimulation. These results indicate that the mode of anti-CD3 stimulation (in solution or on solid phase) controls a cellular function that modifies the consequences of signal transduction through phosphatidylinositol turnover.

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Cite This Study

Ledbetter et al. (1987) studied this question.

synapsesocial.com/papers/6a11dd3ff7bd4f5c7da574e7https://doi.org/10.1128/mcb.7.2.650-656.1987
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