Horvath A R, Muszbek L, Kellie S
Department of Clinical Chemistry, University School of Medicine, Debrecen, Hungary.
EMBO J. 1992 Mar;11(3):855-61. doi: 10.1002/j.1460-2075.1992.tb05123.x.
The high amount of pp60c-src in platelets has led to speculation that this kinase is responsible for tyrosine-specific phosphorylation of cellular proteins during platelet activation by different agonists, and is, therefore, implicated in signal transduction of these cells. Unlike pp60v-src, the association of which with the cytoskeleton appears to be a prerequisite for transformation, pp60c-src is detergent-soluble in fibroblasts overexpressing the c-src gene, and its role in normal cellular function remains elusive. To gain a better understanding of the function of pp60c-src we have investigated the subcellular distribution of pp60c-src and its relationship to the cytoskeleton during platelet activation. Quantitative immunoblotting and immunoprecipitation have revealed that pp60c-src is detergent-soluble in resting platelets, while 40% of total platelet pp60c-src becomes associated with the cytoskeletal fraction upon platelet activation. We have also shown that a small pool of pp60c-src is associated with the membrane skeletal fraction which remains unchanged during the activation process. The interaction of pp60c-src with cytoskeletal proteins strongly correlates with aggregation and is mediated by GPIIb/IIIa receptor-fibrinogen binding. We suggest that the translocation of pp60c-src to the cytoskeleton and its association with cytoskeletal proteins may regulate tyrosine phosphorylation in platelets.
血小板中大量的pp60c-src引发了这样的推测:该激酶在不同激动剂激活血小板的过程中,负责细胞蛋白的酪氨酸特异性磷酸化,因此与这些细胞的信号转导有关。与pp60v-src不同,pp60v-src与细胞骨架的结合似乎是转化的前提条件,而pp60c-src在过表达c-src基因的成纤维细胞中可被去污剂溶解,其在正常细胞功能中的作用仍不清楚。为了更好地理解pp60c-src的功能,我们研究了血小板激活过程中pp60c-src的亚细胞分布及其与细胞骨架的关系。定量免疫印迹和免疫沉淀显示,pp60c-src在静息血小板中可被去污剂溶解,而血小板激活后,血小板总pp60c-src的40%与细胞骨架部分结合。我们还表明,一小部分pp60c-src与膜骨架部分相关,在激活过程中保持不变。pp60c-src与细胞骨架蛋白的相互作用与聚集密切相关,并由糖蛋白IIb/IIIa受体-纤维蛋白原结合介导。我们认为,pp60c-src向细胞骨架的转位及其与细胞骨架蛋白的结合可能调节血小板中的酪氨酸磷酸化。