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糖蛋白Ib-IX复合物的酪氨酸硫酸化:硫酸化残基的鉴定及其对配体结合的影响。

Tyrosine sulfation of the glycoprotein Ib-IX complex: identification of sulfated residues and effect on ligand binding.

作者信息

Dong J F, Li C Q, López J A

机构信息

Gladstone Institute of Cardiovascular Disease, Cardiovascular Research Institute, San Francisco, California 94141-9100.

出版信息

Biochemistry. 1994 Nov 22;33(46):13946-53. doi: 10.1021/bi00250a050.

Abstract

Here, we present evidence that glycoprotein (GP) Ib alpha, one of three polypeptides that make up the GP Ib--IX complex--the receptor for von Willebrand factor (vWf) on the surface of unactivated platelets--is modified by sulfation of tyrosine residues. Only GP Ib alpha was found to incorporate 35S when the GP Ib--IX complex was immunoprecipitated from [35S]sulfate metabolically labeled L and CHO cells that express the recombinant complex. The occurrence of sulfation on tyrosine residues of the polypeptide backbone was determined by removing O- and N-linked oligosaccharides. Limited proteolytic digestion of metabolically labeled GP Ib alpha revealed that sulfated tyrosine residues are located in the 45-kDa globular region containing the vWf binding site. By mutating potentially sulfated tyrosine residues to phenylalanine and comparing the stoichiometry of sulfate incorporation of these mutants to the incorporation in wild-type GP Ib alpha, three clustered tyrosine residues--Tyr-276, Tyr-278, and Tyr-279-were identified that undergo the modification. Culturing cells in sulfate-depleted medium containing sodium chlorate and guaiacol completely inhibited GP Ib alpha sulfation but did not decrease GP Ib-IX expression on the cell surface. Similarly, transiently transfected CHO cells expressed the mutant GP Ib alpha polypeptide on their surfaces at the same levels as they expressed wild-type GP Ib alpha. These results suggest that tyrosine sulfation of GP Ib alpha has little or no effect on the synthesis, assembly, and surface expression of the GP Ib-IX complex. Nevertheless, inhibiting sulfation of GP Ib alpha reduced the binding of 125I-labeled vWf in the presence of ristocetin by up to 37%.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在此,我们提供证据表明,糖蛋白(GP)Ibα,即构成GP Ib-IX复合物的三种多肽之一(未活化血小板表面血管性血友病因子(vWf)的受体),会被酪氨酸残基硫酸化修饰。当从代谢标记有[35S]硫酸盐的表达重组复合物的L细胞和CHO细胞中免疫沉淀GP Ib-IX复合物时,仅发现GP Ibα掺入了35S。通过去除O-和N-连接的寡糖来确定多肽主链酪氨酸残基上硫酸化的发生情况。对代谢标记的GP Ibα进行有限的蛋白酶消化显示,硫酸化的酪氨酸残基位于包含vWf结合位点的45 kDa球状区域。通过将潜在硫酸化的酪氨酸残基突变为苯丙氨酸,并比较这些突变体的硫酸盐掺入化学计量与野生型GP Ibα中的掺入情况,鉴定出三个成簇的酪氨酸残基——Tyr-276、Tyr-278和Tyr-279——会发生这种修饰。在含有氯酸钠和愈创木酚的硫酸盐缺乏培养基中培养细胞完全抑制了GP Ibα的硫酸化,但并未降低细胞表面GP Ib-IX的表达。同样,瞬时转染的CHO细胞在其表面表达突变型GP Ibα多肽的水平与表达野生型GP Ibα的水平相同。这些结果表明,GP Ibα的酪氨酸硫酸化对GP Ib-IX复合物的合成、组装和表面表达几乎没有影响。然而,在存在瑞斯托菌素的情况下,抑制GP Ibα的硫酸化可使125I标记的vWf的结合减少多达37%。(摘要截短于250字)

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