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由于I型D型血管性血友病中存在半胱氨酸(Cys)到精氨酸(Arg)的突变,导致血管性血友病因子亚基二聚化缺陷。

Defective dimerization of von Willebrand factor subunits due to a Cys-> Arg mutation in type IID von Willebrand disease.

作者信息

Schneppenheim R, Brassard J, Krey S, Budde U, Kunicki T J, Holmberg L, Ware J, Ruggeri Z M

机构信息

Universitäts-Kinderklinik, Kiel, Germany.

出版信息

Proc Natl Acad Sci U S A. 1996 Apr 16;93(8):3581-6. doi: 10.1073/pnas.93.8.3581.

Abstract

The same heterozygous T -> C transition at nt 8567 of the von Willebrand factor (vWF) transcript was found in two unrelated patients with type III) von Willebrand disease, with no other apparent abnormality. In one family, both alleles were normal in the parents and one sister; thus, the mutation originated de novo in the proposita. The second patient also had asymptomatic parents who, however, were not available for study. The structural consequences of the identified mutation, resulting in the CyS2010 -> Arg substitution, were evaluated by expression of the vWF carboxyl-terminal domain containing residues 1366-2050. Insect cells infected with recombinant baculovirus expressing normal vWF sequence secreted a disulfide linked dimeric molecule with an apparent molecular mass of 150 kDa before reduction, yielding a single band of 80 kDa after disulfide bond reduction. In contrast, cells expressing the mutant fragment secreted a monomeric molecule of apparent molecular mass of 80 kDa, which remained unchanged after reduction. We conclude that CyS2010 is essential for normal dimerization of vWF subunits through disulfide bonding of carboxyl-terminal domains and that a heterozygous mutation in the corresponding codon is responsible for defective multimer formation in type III) von Willebrand disease.

摘要

在两名无关的III型血管性血友病患者中,发现血管性血友病因子(vWF)转录本第8567位核苷酸处存在相同的杂合T→C转换,且无其他明显异常。在一个家族中,父母和一个姐妹的两个等位基因均正常;因此,该突变是先证者新发的。第二名患者的父母也无症状,但未对其进行研究。通过表达含1366 - 2050位残基的vWF羧基末端结构域,评估了所鉴定突变导致的Cys2010→Arg替代的结构后果。用表达正常vWF序列的重组杆状病毒感染昆虫细胞,在还原前分泌出一种二硫键连接的二聚体分子,其表观分子量为150 kDa,二硫键还原后产生一条80 kDa的单带。相比之下,表达突变片段的细胞分泌出一种表观分子量为80 kDa的单体分子,还原后其大小不变。我们得出结论,Cys2010对于vWF亚基通过羧基末端结构域的二硫键进行正常二聚化至关重要,且相应密码子中的杂合突变是III型血管性血友病中多聚体形成缺陷的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23f1/39653/c163c06f403b/pnas01515-0433-a.jpg

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