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人血小板表面蛋白通过胞外蛋白激酶/磷酸酶系统进行的磷酸化和去磷酸化作用。

Phosphorylation and dephosphorylation of human platelet surface proteins by an ecto-protein kinase/phosphatase system.

作者信息

Naik U P, Kornecki E, Ehrlich Y H

机构信息

Department of Anatomy and Cell Biology, SUNY Health Science Center, Brooklyn 11203.

出版信息

Biochim Biophys Acta. 1991 Apr 17;1092(2):256-64. doi: 10.1016/0167-4889(91)90165-t.

Abstract

We have characterized a novel ecto-protein kinase activity and a novel ecto-protein phosphatase activity on the membrane surface of human platelets. Washed intact platelets, when incubated with [gamma-32P]ATP in Tyrode's buffer, showed the phosphorylation of a membrane surface protein migrating with an apparent molecular mass of 42 kDa on 5-15% SDS polyacrylamide gradient gels. The 42 kDa protein could be further resolved on 15% SDS gels into two proteins of 39 kDa and 42 kDa. In this gel system, it was found that the 39 kDa protein became rapidly phosphorylated and dephosphorylated, whereas the 42 kDa protein was phosphorylated and dephosphorylated at a much slower rate. NaF inhibited the dephosphorylation of these proteins indicating the involvement of an ecto-protein phosphatase. The platelet membrane ecto-protein kinase responsible for the phosphorylation of both of these proteins was identified as a serine kinase and showed dependency on divalent cations Mg2+ or Mn2+ ions. Ca2+ ions potentiated the Mg(2+)-dependent ecto-protein kinase activity. The ecto-protein kinase rapidly phosphorylated histone and casein added exogenously to the extracellular medium of intact platelets. Following activation of platelets by alpha-thrombin, the incorporation of [32P]phosphate from exogenously added [gamma-32P]ATP by endogenous protein substrates was reduced by 90%, suggesting a role of the ecto-protein kinase system in the regulation of platelet function. The results presented here demonstrate that both protein kinase and protein phosphatase activities reside on the membrane surface of human platelets. These activities are capable of rapidly phosphorylating and dephosphorylating specific surface platelet membrane proteins which may play important roles in early events of platelet activation and secretion.

摘要

我们已对人血小板膜表面一种新型的胞外蛋白激酶活性和一种新型的胞外蛋白磷酸酶活性进行了表征。用台氏缓冲液洗涤后的完整血小板,在与[γ-32P]ATP一起孵育时,在5-15%的SDS聚丙烯酰胺梯度凝胶上显示出一种表观分子量为42 kDa的膜表面蛋白发生磷酸化。42 kDa的蛋白在15%的SDS凝胶上可进一步分离为39 kDa和42 kDa的两种蛋白。在该凝胶系统中,发现39 kDa的蛋白快速发生磷酸化和去磷酸化,而42 kDa的蛋白磷酸化和去磷酸化的速率要慢得多。NaF抑制这些蛋白的去磷酸化,表明有胞外蛋白磷酸酶参与。负责这两种蛋白磷酸化的血小板膜胞外蛋白激酶被鉴定为丝氨酸激酶,并显示出对二价阳离子Mg2+或Mn2+离子的依赖性。Ca2+离子增强了Mg(2+)-依赖性胞外蛋白激酶活性。胞外蛋白激酶能快速磷酸化完整血小板细胞外培养基中外源添加的组蛋白和酪蛋白。在用α-凝血酶激活血小板后,内源性蛋白底物从外源添加的[γ-32P]ATP中掺入[32P]磷酸的量减少了90%,这表明胞外蛋白激酶系统在血小板功能调节中起作用。此处给出的结果表明,蛋白激酶和蛋白磷酸酶活性都存在于人血小板的膜表面。这些活性能够快速使血小板膜表面的特定蛋白磷酸化和去磷酸化,这可能在血小板激活和分泌的早期事件中起重要作用。

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