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Nonsense-mediated RNA decay in the TSC1 gene suggests a useful tool pre- and post-positional cloning.

机译:TSC1基因中的无意义介导的RNA衰变提示定位前和定位后有用的工具。

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Many mRNAs carrying mutations that are predicted to encode a truncated protein are subject to a mechanism known as nonsense-mediated mRNA decay (NMD), which results in reduced levels of mutant transcript. Tuberous sclerosis (TSC), an autosomal dominant neurocutaneous disorder with mutations in either of two genes, TSC1 or TSC2, requires comprehensive screening of both genes for molecular diagnosis. Virtually all TSC1 mutations are predicted to truncate the protein product. Coding and newly identified 3' untranslated region polymorphisms in TSC1 were used to develop a transcript imbalance assay to investigate TSC1 transcript levels in patients. This approach allowed the correct identification of six out of seven TSC1 patients tested blind from a panel of TSC1 and TSC2 patients, with no false positives. The extent of NMD in TSC1 was found to correlate with each individual mutation regardless of intra-familial variation in clinical features and with no strong evidence for positional bias. NMD in TSC1 was more pronounced in cultured cells than in RNA prepared directly from peripheral lymphocytes (in which novel splicing of exon 5 was observed). The advent of a dense SNP map of transcribed regions of the genome may allow a similar transcript imbalance assay in the assessment of candidate genes for diseases whose causes are still unknown.
机译:许多带有预测可编码截短蛋白的突变的mRNA受一种称为无义介导的mRNA衰变(NMD)的机制,导致突变体转录物水平降低。结节性硬化症(TSC)是一种常染色体显性遗传性神经皮肤疾病,在两个基因(TSC1或TSC2)中均具有突变,需要对这两个基因进行全面筛选以进行分子诊断。几乎所有TSC1突变都被预测会截断蛋白质产物。使用编码和新发现的TSC1中的3'非翻译区多态性来开发转录本失衡测定法,以研究患者的TSC1转录本水平。这种方法可以正确识别从一组TSC1和TSC2患者中盲检测的7名TSC1患者中的6名,没有假阳性。发现TSC1中NMD的程度与每个个体突变相关,而与家族特征的临床特征无关,也没有位置偏倚的有力证据。 TSC1中的NMD在培养的细胞中比在直接从外周淋巴细胞制备的RNA中更明显(其中观察到外显子5的新剪接)。基因组转录区的密集SNP图的出现可能在评估其原因仍未知的疾病的候选基因时,可以进行类似的转录失衡分析。

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