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Molecular characterization of large deletions in the von Hippel-Lindau (VHL) gene by quantitative real-time PCR: the hypothesis of an alu-mediated mechanism underlying VHL gene rearrangements.

机译:von Hippel-Lindau(VHL)基因中的大缺失的分子特征通过实时定量PCR进行:Vlu基因重排的alu介导机制的假说。

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INTRODUCTION: Mutations of the von Hippel-Lindau (VHL) gene are responsible for VHL disease. This is a familial autosomal-dominant syndrome, predisposing to the development of benign and malignant tumors, including CNS and retinal hemangioblastomas, pheochromocytomas, and clear cell renal carcinomas.At least 30% of the disease-causing mutations in the VHL gene involve large alterations. Identification of these mutations is not possible using PCR-based mutational scanning methods. Quantitative Southern blot analysis has been traditionally employed for the detection of complete or partial deletions and more complex rearrangements of the gene. METHODS: An alternative quantitative method was developed using a combination of quantitative Southern blot analysis and real-time PCR. With this approach, we studied 24 large VHL gene alterations to determine the exact nature of the mutations and to possibly characterize the boundaries of the deleted regions. RESULTS: This combined molecular approach showed that all the VHL alterations studied were due to deletions, from which the position in the gene could be more precisely mapped. One of the samples that was completely characterized was found to carry an intragenic 2.2kb deletion with both 5' and 3' breakpoints located within Alu-repeat sequences. CONCLUSION: This is the first report on the molecular analysis of large VHL alterations. The results of our study and the complete characterization of a large deletion lead to the hypothesis that an Alu-mediated mechanism may be responsible for the common occurrence of large alterations in the VHL gene.
机译:简介:von Hippel-Lindau(VHL)基因突变是导致VHL疾病的原因。这是一种家族性常染色体显性综合征,易患良性和恶性肿瘤,包括中枢神经系统和视网膜血管母细胞瘤,嗜铬细胞瘤和透明细胞肾癌.VHL基因中至少30%的致病突变涉及大改变。使用基于PCR的突变扫描方法无法鉴定这些突变。传统上已经将定量Southern印迹分析用于检测基因的全部或部分缺失和更复杂的重排。方法:使用定量Southern印迹分析和实时PCR的组合开发了另一种定量方法。通过这种方法,我们研究了24个大的VHL基因改变,以确定突变的确切性质并可能表征缺失区域的边界。结果:这种组合分子方法表明,所有研究的VHL改变都是由于缺失引起的,从中可以更精确地定位基因的位置。发现其中一个被完全表征的样品带有一个基因内的2.2kb缺失,其中5'和3'断裂点位于Alu-重复序列中。结论:这是关于大型VHL改变的分子分析的第一份报告。我们的研究结果和大缺失的完整表征导致了这样一个假设,即Alu介导的机制可能是VHL基因中大变化常见的原因。

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