Randi A M, Rabinowitz I, Mancuso D J, Mannucci P M, Sadler J E
Howard Hughes Medical Institute, Department of Medicine, Washington University School of Medicine, St. Louis, Missouri 63110.
J Clin Invest. 1991 Apr;87(4):1220-6. doi: 10.1172/JCI115122.
Many variants of von Willebrand disease (vWD) with qualitatively abnormal von Willebrand factor (vWF) are recognized. In vWD type IIB, the abnormal protein displays enhanced affinity for a platelet vWF receptor, the glycoprotein Ib-IX complex. 14 patients from 7 unrelated families with vWD type IIB were studied to determine the molecular basis for this phenotype. Specific oligonucleotide primers were used to amplify portions of vWF exon 28 encoding a domain that interacts with the platelet glycoprotein Ib-IX complex. Candidate missense mutations were identified for all 14 patients by DNA sequencing, allele specific oligonucleotide hybridization, and restriction endonuclease digestion. These sequence changes occur in an 11 amino acid segment within a single disulfide loop bounded by Cys(509) and Cys(695). All of these sequence changes are C----T transitions within CG dinucleotides. Six patients from two unrelated families were heterozygous for the encoded sequence Arg(543)----Trp. Seven patients from four unrelated families were heterozygous for the encoded sequence Arg(545)----Cys; this sequence change appears to have occurred independently three times, once as a new spontaneous mutation. One patient with apparently sporadic vWD type IIB was heterozygous for the encoded sequence Val(553)----Met, and this appears to be a new mutation. None of these sequence changes was found in 100 normal alleles. These findings suggest that vWD type IIB may be caused by relatively few distinct mutations, that these mutations may cluster within a specific region of one disulfide loop in vWF domain A1, and that this region can modulate the affinity of vWF for the platelet glycoprotein Ib-IX complex.
人们已经认识到许多血管性血友病(vWD)的变体,其血管性血友病因子(vWF)存在质量异常。在IIB型vWD中,异常蛋白对血小板vWF受体糖蛋白Ib-IX复合物表现出增强的亲和力。对来自7个不相关家族的14例IIB型vWD患者进行了研究,以确定这种表型的分子基础。使用特异性寡核苷酸引物扩增vWF外显子28的部分片段,该片段编码与血小板糖蛋白Ib-IX复合物相互作用的结构域。通过DNA测序、等位基因特异性寡核苷酸杂交和限制性内切酶消化,为所有14例患者鉴定出候选错义突变。这些序列变化发生在由Cys(509)和Cys(695)界定的单个二硫键环内的11个氨基酸片段中。所有这些序列变化都是CG二核苷酸内的C→T转换。来自两个不相关家族的6例患者编码序列Arg(543)→Trp为杂合子。来自四个不相关家族的7例患者编码序列Arg(545)→Cys为杂合子;这种序列变化似乎独立发生了三次,一次是作为新的自发突变。一名明显散发的IIB型vWD患者编码序列Val(553)→Met为杂合子,这似乎是一个新突变。在100个正常等位基因中未发现这些序列变化。这些发现表明,IIB型vWD可能由相对较少的独特突变引起,这些突变可能聚集在vWF A1结构域一个特定二硫键环的特定区域内,并且该区域可以调节vWF对血小板糖蛋白Ib-IX复合物的亲和力。