Chang Z L, Beezhold D H
Laboratory of Macrophage Biology, Guthrie Research Institute, Sayre, Pennsylvania 18840.
Immunology. 1993 Nov;80(3):360-6.
The distribution of protein kinase C (PKC) isoforms and phorbol 12-myristate 13-acetate (PMA)-induced activation of PKC in human monocytes was investigated. Using Western blot analysis, PKC beta was found to be the most abundant isoform in monocytes. PKC beta was equally distributed in the cytosol and membrane. PKC-alpha was readily detectable and found predominantly in the cytosol. Little to no PKC-epsilon, gamma, delta, and zeta were observed. Following the treatment of monocytes with PMA, the physical translocation of PKC alpha from the cytosol to the membrane occurred over 60 min. PMA-induced translocation of PKC-beta was difficult to detect by Western blot. Fura-2 analysis demonstrated that PMA-induced PKC translocation was not accompanied by a net change in cytosolic calcium levels. Using histone as a substrate for PKC activity, an extremely rapid translocation of PKC-dependent histone phosphorylation (PKC-DHP) was induced by PMA. Cytosolic PKC-DHP activity decreased to undetectable levels within 8 min. In contrast, analysis of PKC-dependent endogenous substrate phosphorylation (PKC-DESP) showed a pattern with a time-course similar to that observed with Western blot. Thus, translocation of PKC-DESP but not PKC-DHP activity correlated with PKC-alpha as determined by Western blot. The data support the concept that PKC activity is substrate dependent and suggest that using one assay for the measurement of PKC activity may lead to erroneous conclusions.
研究了蛋白激酶C(PKC)同工型在人单核细胞中的分布以及佛波酯12 - 肉豆蔻酸酯13 - 乙酸酯(PMA)诱导的PKC激活情况。通过蛋白质印迹分析发现,PKCβ是单核细胞中最丰富的同工型。PKCβ在胞质溶胶和细胞膜中均匀分布。PKCα易于检测到,且主要存在于胞质溶胶中。几乎未观察到PKCε、γ、δ和ζ。用PMA处理单核细胞后,PKCα在60分钟内从胞质溶胶向细胞膜发生了物理转位。通过蛋白质印迹难以检测到PMA诱导的PKCβ转位。Fura - 2分析表明,PMA诱导的PKC转位并未伴随胞质钙水平的净变化。以组蛋白作为PKC活性的底物,PMA诱导了PKC依赖性组蛋白磷酸化(PKC - DHP)的极快速转位。胞质PKC - DHP活性在8分钟内降至无法检测的水平。相比之下,对PKC依赖性内源性底物磷酸化(PKC - DESP)的分析显示出一种时间进程模式,类似于蛋白质印迹所观察到的。因此,如蛋白质印迹所确定的,PKC - DESP的转位而非PKC - DHP活性与PKCα相关。这些数据支持了PKC活性是底物依赖性的概念,并表明使用一种测定方法来测量PKC活性可能会导致错误的结论。