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一种新的L1446P突变导致血管性血友病因子的合成、结构和功能受损。

A new L1446P mutation is responsible for impaired von Willebrand factor synthesis, structure, and function.

作者信息

Casonato Alessandra, Cattini Maria Grazia, Soldera Carmen, Marcato Stefania, Sartorello Francesca, Pontara Elena, Pagnan Antonio

机构信息

Department of Medical and Surgical Sciences, University of Padua Medical School, Padua, Italy.

出版信息

J Lab Clin Med. 2004 Nov;144(5):254-9. doi: 10.1016/j.lab.2004.08.002.

Abstract

We report on a new mutation (4337T-->C) in exon 28 of the von Willebrand factor (VWF) gene, resulting in a substitution of L with P at residue 1446 (L1446P) of pre-pro-VWF. The defect is transmitted as a dominant trait and induces a reduced VWF synthesis, an abnormal VWF multimer pattern and a deficient VWF-platelet glycoprotein Ib interaction. The proband had low plasma and platelet VWF antigen levels, a reduced VWF collagen-binding capacity, and a disproportionately low VWF ristocetin cofactor activity, associated with the absence of ristocetin-induced platelet aggregation. Multimer analysis showed that the smaller multimers were slightly low, whereas the larger ones were significantly reduced or absent, with a clear cutoff between the two patterns. Similar hemostatic findings were observed in the proband's sister and nephew. Desmopressin administration restored VWF levels to near normal, but this was not so for VWF ristocetin cofactor activity or ristocetin-induced platelet aggregation. VWF multimers improved after desmopressin, moreover, with the larger forms restored and the smaller ones still relatively more represented. Recombinant P1446 VWF synthesis was reduced at heterozygous level, and its multimer pattern was similar to that observed in plasma VWF. These findings confirm the role of L1446P mutation in determining the von Willebrand disease (VWD) phenotype observed in our patients. Given the lack of large and intermediate VWF multimers, and the fact that the VWF-platelet interaction defect appears to be partially independent of multimer pattern, the VWD associated with L1446P mutation may belong to the type 2A/2M VWD variant.

摘要

我们报告了血管性血友病因子(VWF)基因第28外显子的一个新突变(4337T→C),该突变导致前体VWF第1446位氨基酸由亮氨酸(L)替换为脯氨酸(P)(L1446P)。该缺陷以显性性状遗传,导致VWF合成减少、VWF多聚体模式异常以及VWF与血小板糖蛋白Ib的相互作用缺陷。先证者血浆和血小板VWF抗原水平较低,VWF胶原结合能力降低,VWF瑞斯托霉素辅因子活性不成比例地低,且无瑞斯托霉素诱导的血小板聚集。多聚体分析显示,较小的多聚体略低,而较大的多聚体显著减少或缺失,两种模式之间有明显界限。在先证者的姐姐和侄子中观察到类似的止血结果。给予去氨加压素后,VWF水平恢复至接近正常,但VWF瑞斯托霉素辅因子活性或瑞斯托霉素诱导的血小板聚集未恢复正常。此外,去氨加压素治疗后VWF多聚体有所改善,较大的形式恢复,较小的形式仍相对占比较多。杂合水平的重组P1446 VWF合成减少,其多聚体模式与血浆VWF中观察到的相似。这些发现证实了L1446P突变在决定我们患者中观察到的血管性血友病(VWD)表型中的作用。鉴于缺乏大的和中等大小的VWF多聚体,以及VWF与血小板相互作用缺陷似乎部分独立于多聚体模式,与L1446P突变相关的VWD可能属于2A/2M型VWD变异体。

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