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糖蛋白I(b)α的酪氨酸硫酸化。静电相互作用在血管性血友病因子结合中的作用。

Tyrosine sulfation of glycoprotein I(b)alpha. Role of electrostatic interactions in von Willebrand factor binding.

作者信息

Dong J, Ye P, Schade A J, Gao S, Romo G M, Turner N T, McIntire L V, López J A

机构信息

Division of Thrombosis Research, Department of Medicine, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

J Biol Chem. 2001 May 18;276(20):16690-4. doi: 10.1074/jbc.M101035200. Epub 2001 Feb 23.

Abstract

Glycoprotein I(b)alpha (GP I(b)alpha), the ligand binding subunit of the platelet glycoprotein Ib-IX-V complex, is sulfated on three tyrosine residues (Tyr-276, Tyr-278, and Tyr-279). This posttranslational modification is known to be critical for von Willebrand factor (vWF) binding; yet it remains unclear whether it provides a specific structure or merely contributes negative charges. To investigate this issue, we constructed cell lines expressing GP I(b)alpha polypeptides with the three tyrosine residues converted to either Glu or Phe and studied the ability of these mutants to bind vWF in the presence of modulators or shear stress. The mutants were expressed normally on the cell surface as GP Ib-IX complexes, with the conformation of the ligand-binding domain preserved, as judged by the binding of conformation-sensitive monoclonal antibodies. In contrast to their normal expression, both mutants were functionally abnormal. Cells expressing the Phe mutant failed to bind vWF in the presence of either ristocetin or botrocetin. These cells adhered to and rolled on immobilized vWF only when their surface receptor density was increased to twice the level that supported adhesion of cells expressing the wild-type receptor and even then only 20% as many rolled and rolled significantly faster than wild-type cells. Cells expressing the Glu mutant, on the other hand, were normal with respect to ristocetin-induced vWF binding and adhesion to immobilized vWF but were markedly defective in botrocetin-induced vWF binding. These results indicate that GP I(b)alpha tyrosine sulfation influences the interaction of this polypeptide with vWF primarily by contributing negative charges under physiological conditions and when the interaction is induced by ristocetin but contributes a specific structure to the botrocetin-induced interaction.

摘要

糖蛋白I(b)α(GP I(b)α)是血小板糖蛋白Ib-IX-V复合物的配体结合亚基,在三个酪氨酸残基(Tyr-276、Tyr-278和Tyr-279)上发生硫酸化。已知这种翻译后修饰对于血管性血友病因子(vWF)的结合至关重要;然而,尚不清楚它是提供了特定结构还是仅仅增加了负电荷。为了研究这个问题,我们构建了表达GP I(b)α多肽的细胞系,其中三个酪氨酸残基分别被转换为Glu或Phe,并研究了这些突变体在存在调节剂或剪切应力的情况下结合vWF的能力。通过构象敏感单克隆抗体的结合判断,这些突变体在细胞表面正常表达为GP Ib-IX复合物,配体结合结构域的构象得以保留。与它们的正常表达情况相反,这两种突变体在功能上均异常。表达Phe突变体的细胞在存在瑞斯托霉素或蛇毒凝血酶的情况下无法结合vWF。这些细胞仅在其表面受体密度增加到支持表达野生型受体的细胞黏附水平的两倍时,才会黏附并在固定化的vWF上滚动,即便如此,滚动的细胞数量也仅为野生型细胞的20%,且滚动速度明显快于野生型细胞。另一方面,表达Glu突变体的细胞在瑞斯托霉素诱导的vWF结合以及与固定化vWF的黏附方面正常,但在蛇毒凝血酶诱导的vWF结合方面存在明显缺陷。这些结果表明,GP I(b)α酪氨酸硫酸化主要通过在生理条件下以及在瑞斯托霉素诱导相互作用时增加负电荷来影响该多肽与vWF的相互作用,但在蛇毒凝血酶诱导的相互作用中贡献了特定结构。

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