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血管性血友病因子前肽D1结构域在血管性血友病因子多聚化中的作用

The role of the D1 domain of the von Willebrand factor propeptide in multimerization of VWF.

作者信息

Rosenberg Jonathan B, Haberichter Sandra L, Jozwiak Mary A, Vokac Elizabeth A, Kroner Philip A, Fahs Scot A, Kawai Yohko, Montgomery Robert R

机构信息

Blood Research Institute, The Blood Center of Southeastern Wisconsin, Milwaukee, USA.

出版信息

Blood. 2002 Sep 1;100(5):1699-706. doi: 10.1182/blood-2002-03-0789.

Abstract

While studying patient plasma containing an unusual pattern of von Willebrand factor (VWF) multimers, we discovered a previously unreported phenomenon: heavy predominance of dimeric VWF. Genomic analysis revealed a new congenital mutation (Tyr87Ser) that altered the final stages of VWF biosynthesis. This mutation in the propeptide (VWFpp) resulted in synthesis of dimeric VWF with an almost complete loss of N-terminal multimerization. The multimer pattern in patient plasma appears to result from separate alleles' synthesizing wild-type or mutant (dimeric) VWF, with homodimers composing the predominant protomeric species. We have expressed VWF protein containing the Tyr87Ser mutation and analyzed the intracellular processing and resulting VWF biological functions. The expressed dimeric VWF displayed a loss of several specific functions: collagen binding, factor VIII binding, and ristocetin-induced platelet binding. However, granular storage of dimeric VWF was normal, demonstrating that the lack of multimerization does not preclude granular storage. Although the tertiary structure of the VWFpp remains unknown, the mutant amino acid is located in a region that is highly conserved across several species and may play a major role in the multimerization of VWF. Our data suggest that one function of the highly cysteine-rich VWFpp is to align the adjacent subunits of VWF into the correct configuration, serving as an intramolecular chaperone. The integrity of the VWFpp is essential to maintain the proper spacing and alignment of the multiple cysteines in the VWFpp and N-terminus of the mature VWF.

摘要

在研究含有异常模式的血管性血友病因子(VWF)多聚体的患者血浆时,我们发现了一种先前未报道的现象:二聚体VWF严重占主导地位。基因组分析揭示了一种新的先天性突变(Tyr87Ser),该突变改变了VWF生物合成的最后阶段。前肽(VWFpp)中的这种突变导致二聚体VWF的合成,其N端多聚化几乎完全丧失。患者血浆中的多聚体模式似乎是由单独的等位基因合成野生型或突变型(二聚体)VWF导致的,同型二聚体构成了主要的原聚体种类。我们表达了含有Tyr87Ser突变的VWF蛋白,并分析了其细胞内加工过程以及由此产生的VWF生物学功能。表达的二聚体VWF表现出几种特定功能的丧失:胶原结合、因子VIII结合以及瑞斯托霉素诱导的血小板结合。然而,二聚体VWF的颗粒储存是正常的,这表明缺乏多聚化并不妨碍颗粒储存。尽管VWFpp的三级结构仍然未知,但突变氨基酸位于几个物种中高度保守的区域,可能在VWF的多聚化中起主要作用。我们的数据表明,高度富含半胱氨酸的VWFpp的一个功能是将VWF的相邻亚基排列成正确的构型,充当分子内伴侣。VWFpp的完整性对于维持VWFpp和成熟VWF N端中多个半胱氨酸的适当间距和排列至关重要。

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