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首页> 外文期刊>Haematologica >New mutations in exon 28 of the von Willebrand factor gene detected in patients with different types of von Willebrand's disease | Haematologica
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New mutations in exon 28 of the von Willebrand factor gene detected in patients with different types of von Willebrand's disease | Haematologica

机译:在不同类型的von Willebrand病患者中检测到von Willebrand因子基因第28外显子的新突变| Business Wire血液学

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BACKGROUND AND OBJECTIVES: von Willebrand's disease (vWD), the most common hereditary bleeding disorder in humans, is caused by qualitative and/or quantitative deficiencies of von Willebrand factor, and can manifest itself under several different phenotypes. Most of the molecular defects have been detected in qualitative variants involving exon 28 of the vWF gene. Patients from four unrelated families with different types of vWD were included in the mutation screening of this region. DESIGN AND METHODS: The whole exon 28 was analyzed in three gene specific fragments, two of them comprising the region involved in the platelet glycoprotein Ib vWF interaction. The search for mutations was carried out by single-stranded conformation polymorphism analysis. The mutations were then identified by automatic sequencing of the anomalous electrophoretic pattern samples. RESULTS: The following candidate mutations were detected. The 3941T-->A transversion, which predicts the amino acid change V1314D, was detected in a sporadic patient with type 2B vWD and severe thrombocytopenia. The 4309G-->A transition, resulting in the amino acid substitution A1437T, was identified in four patients classified as having type 2M vWD. Six unclassified patients from another family carry the 4135C-->T mutation, which gives rise to a cysteine instead of the normal arginine (R1379C) that segregates with the phenotype. The amino acid change C1227R, predicted by the mutation 4135C-->T, was identified as a compound heterozygote in a patient with moderately severe type 1 vWD. None of these mutations had been described previously. INTERPRETATION AND CONCLUSIONS: These findings confirm the importance already given to this region for the correct function of von Willebrand factor since the mutations detected, which affect the D3 and A1 domains, could give rise to different variants of the disease.
机译:背景与目的:von Willebrand病(vWD)是人类最常见的遗传性出血性疾病,是由von Willebrand因子的定性和/或定量缺陷引起的,可以在几种不同的表型下表现出来。在涉及vWF基因外显子28的定性变异中已检测到大多数分子缺陷。来自四个无亲缘关系的vWD类型不同的家族的患者被包括在该区域的突变筛查中。设计与方法:整个外显子28被分析为三个基因特异性片段,其中两个包含与血小板糖蛋白Ib vWF相互作用有关的区域。通过单链构象多态性分析进行突变的搜索。然后通过自动测序异常电泳图样来鉴定突变。结果:检测到以下候选突变。在一名散发性2B型vWD和严重血小板减少症的患者中检测到3941T-> A转换,可预测氨基酸变化V1314D。在四名分类为2M vWD型的患者中鉴定出4309G→A过渡,导致氨基酸取代A1437T。来自另一个家庭的六名未分类患者携带4135C→T突变,该突变产生一个半胱氨酸,而不是与该表型分开的正常精氨酸(R1379C)。由突变4135C→T预测的C1227R氨基酸变化被鉴定为中重度1型vWD患者的复合杂合子。这些突变均未曾描述过。解释和结论:这些发现证实了该区域对于von Willebrand因子正确功能的重要性,因为检测到的影响D3和A1结构域的突变可能导致该疾病的不同变异。

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