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人血小板中一种46 kDa蛋白响应cGMP和cAMP升高的血管舒张剂的化学计量和可逆磷酸化。

Stoichiometric and reversible phosphorylation of a 46-kDa protein in human platelets in response to cGMP- and cAMP-elevating vasodilators.

作者信息

Halbrügge M, Friedrich C, Eigenthaler M, Schanzenbächer P, Walter U

机构信息

Medizinische Universitätsklinik, Labor für Klinische Biochemie, Würzburg, Federal Republic of Germany.

出版信息

J Biol Chem. 1990 Feb 25;265(6):3088-93.

PMID:2154470
Abstract

Recently, we reported the purification of a 46-kDa membrane-associated platelet protein which is phosphorylated in intact platelets and platelet membranes by cGMP- and cAMP-dependent protein kinases (Halbrügge, M., and Walter, U. (1989) Eur. J. Biochem. 185, 41-50). Here we demonstrate that both cGMP- and cAMP-dependent protein kinases catalyze the rapid incorporation of up to 1.4 mol of phosphate/mol of this purified vasodilator-stimulated phosphoprotein (VASP). A specific rabbit antiserum was prepared which recognized both the 46-kDa dephospho form and the 50-kDa phospho form of VASP in Western blots. In untreated washed platelets, VASP was found to be present primarily as a 46-kDa dephosphoprotein. Sodium nitroprusside (100 microM) raised the intracellular platelet cGMP concentration from approximately 0.44 to 4.1 microM, without a significant effect on the cAMP level, and converted up to 50% of VASP to the 50-kDa phospho form. Prostaglandin E1 (10 microM) raised the platelet cAMP concentration from approximately 4.4 to 28.4 microM, without a significant effect on the cGMP level, and shifted up to 67% of VASP to the 50-kDa phospho form. Removal of the vasodilators sodium nitroprusside and prostaglandin E1 from the platelet suspension was followed by a return of the cyclic nucleotide concentration to basal levels and subsequent conversion of the 50-kDa phospho form of VASP to the 46-kDa dephospho form. The results support the hypothesis that VASP phosphorylation is an important component of the intracellular mechanism of action of these vasodilators in human platelets.

摘要

最近,我们报道了一种46 kDa的膜相关血小板蛋白的纯化,该蛋白在完整血小板和血小板膜中可被环鸟苷酸(cGMP)和环腺苷酸(cAMP)依赖性蛋白激酶磷酸化(哈尔布鲁格,M.,和瓦尔特,U.(1989年)《欧洲生物化学杂志》185卷,41 - 50页)。在此我们证明,cGMP和cAMP依赖性蛋白激酶均可催化这种纯化的血管舒张剂刺激磷蛋白(VASP)快速掺入高达1.4摩尔的磷酸盐/摩尔。制备了一种特异性兔抗血清,其在蛋白质免疫印迹中可识别VASP的46 kDa去磷酸化形式和50 kDa磷酸化形式。在未处理的洗涤血小板中,发现VASP主要以46 kDa的去磷酸化蛋白形式存在。硝普钠(100微摩尔)使血小板细胞内cGMP浓度从约0.44微摩尔升至4.1微摩尔,而对cAMP水平无显著影响,并使高达50%的VASP转化为50 kDa的磷酸化形式。前列腺素E1(10微摩尔)使血小板cAMP浓度从约4.4微摩尔升至28.4微摩尔,对cGMP水平无显著影响,并使高达67%的VASP转变为50 kDa的磷酸化形式。从血小板悬液中去除血管舒张剂硝普钠和前列腺素E1后,环核苷酸浓度恢复至基础水平,随后VASP的50 kDa磷酸化形式转化为46 kDa的去磷酸化形式。这些结果支持了这样一种假说,即VASP磷酸化是这些血管舒张剂在人血小板中细胞内作用机制的一个重要组成部分。

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