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以单亚基形式表达或与糖蛋白Ib-IX结合表达的血小板糖蛋白V的生物合成。

Biosynthesis of platelet glycoprotein V expressed as a single subunit or in association with GPIb-IX.

作者信息

Strassel Catherine, Moog Sylvie, Baas Marie-Jeanne, Cazenave Jean-Pierre, Lanza François

机构信息

INSERM U.311, Etablissement Français du Sang-Alsace, Strasbourg, France.

出版信息

Eur J Biochem. 2004 Sep;271(18):3671-7. doi: 10.1111/j.1432-1033.2004.04304.x.

Abstract

Glycoprotein (GP) V is noncovalently linked to GPIbalpha, GPIbbeta and GPIX within the platelet GPIb-V-IX complex, a receptor for von Willebrand factor and thrombin. Two functions have been ascribed to GPV, namely, the modulation of thrombin- and collagen-dependent platelet responses. The biosynthesis of this molecule was investigated in pulse-chase metabolic labelling experiments performed in CHO cell lines transfected with GPV, alone or in the presence of GPIb-IX. GPV could not be detected at the surface of cells expressing the single subunit but was found instead as a soluble form in the culture medium. In pulse-chase studies, an immature 70 kDa protein was detected in cell lysates, whereas a fully processed 80-82 kDa form was only observed in the culture supernatants at later chase times. Immature GPV was N-glycosylated and retained before the medial Golgi while the secreted molecule contained complex sialylated sugars. The mature soluble form of GPV was produced by an enzymatic cleavage which was not affected by inhibitors of proteasome, calpain or metalloproteinases. When GPV was cotransfected with GPIb-IX, the former was no longer found in the culture supernatant but was retained in the cell membrane as shown by fluorescence-activated cell sorting and confocal microscopy analyses. Surface expressed GPV was processed from an immature 70 kDa form to produce a mature 80 kDa protein, processing similar to the intracellular trafficking of GPIbalpha. These results indicate that correct biosynthesis and surface expression of GPV in platelets requires the presence of the other subunits of the GPIb-V-IX complex.

摘要

糖蛋白(GP)V通过非共价键与血小板糖蛋白Ib-IX复合物中的GPIbalpha、GPIbbeta和GPIX相连,该复合物是血管性血友病因子和凝血酶的受体。GPV具有两种功能,即调节凝血酶和胶原依赖性血小板反应。在单独转染GPV或同时存在GPIb-IX的CHO细胞系中进行的脉冲追踪代谢标记实验,对该分子的生物合成进行了研究。在表达单个亚基的细胞表面未检测到GPV,而是在培养基中发现其以可溶性形式存在。在脉冲追踪研究中,在细胞裂解物中检测到一种未成熟的70 kDa蛋白,而在后期追踪时仅在培养上清液中观察到完全加工的80 - 82 kDa形式。未成熟的GPV进行了N-糖基化并保留在内质网到高尔基体之间,而分泌的分子含有复杂的唾液酸化糖。GPV的成熟可溶性形式是通过酶切产生的,该酶切不受蛋白酶体、钙蛋白酶或金属蛋白酶抑制剂的影响。当GPV与GPIb-IX共转染时,如荧光激活细胞分选和共聚焦显微镜分析所示,前者不再出现在培养上清液中,而是保留在细胞膜上。表面表达的GPV从未成熟的70 kDa形式加工产生成熟的80 kDa蛋白,其加工过程类似于GPIbalpha的细胞内运输。这些结果表明,血小板中GPV的正确生物合成和表面表达需要GPIb-V-IX复合物其他亚基的存在。

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