Nel A E, Bouic P, Lattanze G R, Stevenson H C, Miller P, Dirienzo W, Stefanini G F, Galbraith R M
J Immunol. 1987 May 15;138(10):3519-24.
Reaction of the T cell membrane with monoclonal antibodies to T3 can initiate cellular activation, and this is associated with increased intracellular Ca2+ and inositol-trisphosphate (IP3) release. We therefore studied the possible involvement of Ca2+/phospholipid-dependent kinase (C-kinase) in these phenomena. Quantitative assays of exogenous substrate phosphorylation in unstimulated cells showed Ca2+/phospholipid-dependent kinase activity in the cytosol, but no comparable activity in the particulate fractions corresponding to membrane and cytoskeleton material. At concentrations of soluble anti-T3 that partially activate T cells in the absence of macrophages, there was a 50 to 60% decrease in C-kinase activity in the cytosol, with a comparable increase in activity in the membrane fraction. A similar transfer of activity was also induced with the known C-kinase activator, 12-O-tetradecanoyl-phorbol-13-acetate, although redistribution was more rapid in onset, more complete, and more sustained. Redistribution of enzyme activity was additionally confirmed by qualitative assays of endogenous substrate phosphorylation. Labeling of intact cells followed by immunoprecipitation analysis with anti-T3 indicated signal-dependent phosphorylation of two components of the T3 complex and an unidentified 94,000 substrate that was resistant to reduction and alkylation. These findings are consistent with an important role for C-kinase in transduction of membrane events by the T3-Ti complex.
T细胞膜与抗T3单克隆抗体的反应可引发细胞活化,这与细胞内Ca2+增加和肌醇三磷酸(IP3)释放有关。因此,我们研究了Ca2+/磷脂依赖性激酶(C激酶)在这些现象中可能的作用。对未刺激细胞中外源底物磷酸化的定量分析显示,胞质溶胶中存在Ca2+/磷脂依赖性激酶活性,但在对应于膜和细胞骨架物质的颗粒部分中没有类似活性。在不存在巨噬细胞的情况下,可溶性抗T3浓度部分激活T细胞时,胞质溶胶中C激酶活性降低50%至60%,而膜部分活性有类似增加。已知的C激酶激活剂12-O-十四烷酰佛波醇-13-乙酸酯也诱导了类似的活性转移,尽管重新分布在开始时更快、更完全且更持久。通过对内源底物磷酸化的定性分析进一步证实了酶活性的重新分布。用抗T3对完整细胞进行标记,然后进行免疫沉淀分析,结果表明T3复合物的两个组分以及一种对还原和烷基化有抗性的未鉴定的94,000底物存在信号依赖性磷酸化。这些发现与C激酶在T3-Ti复合物介导的膜事件转导中起重要作用一致。