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细丝蛋白A与糖蛋白Ibα的细胞质尾巴结合,调节血管性血友病因子诱导的血小板活化。

Filamin A binding to the cytoplasmic tail of glycoprotein Ibalpha regulates von Willebrand factor-induced platelet activation.

作者信息

Feng Shuju, Reséndiz Julio C, Lu Xin, Kroll Michael H

机构信息

Thrombosis Research (151), VA Medical Center, 2002 Holcombe Blvd, Houston, TX 77030, USA.

出版信息

Blood. 2003 Sep 15;102(6):2122-9. doi: 10.1182/blood-2002-12-3805. Epub 2003 Jun 5.

Abstract

We examined the hypothesis that filamin A binding to the cytoplasmic tail of platelet glycoprotein Ibalpha (GpIbalpha) is regulated by pathologic shear stress and modulates von Willebrand factor (VWF)-induced platelet activation. To begin, we examined filamin binding to GpIbalpha in Chinese hamster ovary cells coexpressing mutant human GpIb-IX and wild-type human filamin A. We observed that many different deletions and truncations N-terminal to GpIbalpha's cytoplasmic domain residue 594 disrupted filamin A binding, but that binding was unaffected by 14 different point mutations in hydrophilic residues between amino acids 557 and 593. To try to narrow GpIbalpha's filamin A-binding domain, we next measured the effect of several cytoplasmic domain peptides on human filamin A binding to a GST-GpIbalpha cytoplasmic domain fusion protein. One peptide (residues 557-575; designated "A4 peptide") inhibited filamin A binding to the GST-GpIbalpha cytoplasmic domain fusion protein and competed with GpIbalpha for binding to filamin A. When the A4 peptide was delivered to intact human platelets using a carrier peptide, we observed the dose-dependent inhibition of VWF-induced platelet aggregation in response to both ristocetin and shear stress. The effect of the A4 peptide on shear-induced platelet aggregation was accompanied by the attenuation of shear-induced filamin A binding to GpIbalpha and diminished shear-dependent protein tyrosine phosphorylation. These results suggest that shear-dependent VWF-induced platelet activation affects filamin A binding to GpIb-IX-V, and that filamin A binding to the cytoplasmic tail of GpIbalpha regulates proaggregatory tyrosine kinase signaling.

摘要

我们检验了以下假说

细丝蛋白A与血小板糖蛋白Ibalpha(GpIbalpha)胞质尾的结合受病理性剪切应力调节,并调节血管性血友病因子(VWF)诱导的血小板活化。首先,我们检测了细丝蛋白与共表达突变型人GpIb-IX和野生型人细丝蛋白A的中国仓鼠卵巢细胞中GpIbalpha的结合情况。我们观察到,GpIbalpha胞质结构域第594位残基N端的许多不同缺失和截短都会破坏细丝蛋白A的结合,但557至593位氨基酸之间亲水性残基的14种不同点突变对结合没有影响。为了试图缩小GpIbalpha的细丝蛋白A结合结构域,接下来我们测量了几种胞质结构域肽对人细丝蛋白A与GST-GpIbalpha胞质结构域融合蛋白结合的影响。一种肽(残基557 - 575;命名为“A4肽”)抑制细丝蛋白A与GST-GpIbalpha胞质结构域融合蛋白的结合,并与GpIbalpha竞争结合细丝蛋白A。当使用载体肽将A4肽递送至完整的人血小板时,我们观察到对VWF诱导的血小板聚集有剂量依赖性抑制,无论是对瑞斯托菌素还是剪切应力的反应。A4肽对剪切诱导的血小板聚集的影响伴随着剪切诱导的细丝蛋白A与GpIbalpha结合的减弱以及剪切依赖性蛋白酪氨酸磷酸化的减少。这些结果表明,剪切依赖性VWF诱导的血小板活化影响细丝蛋白A与GpIb-IX-V的结合,并且细丝蛋白A与GpIbalpha胞质尾的结合调节促聚集酪氨酸激酶信号传导。

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