首页> 外文期刊>European journal of human genetics: EJHG >A single-nucleotide polymorphic variant of the RET proto-oncogene is underrepresented in sporadic Hirschsprung disease.
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A single-nucleotide polymorphic variant of the RET proto-oncogene is underrepresented in sporadic Hirschsprung disease.

机译:RET原癌基因的单核苷酸多态性变体在散发的Hirschsprung疾病中代表性不足。

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摘要

Hirschsprung disease (HSCR) is an inherited disorder characterised by absence of intrinsic ganglion cells in the distal gastrointestinal tract. Different susceptibility genes, involved in either the Ret-tyrosine kinase or the endothelin signalling pathways, contribute to HSCR phenotype. Interestingly, alterations of these genes are detected in only 30-50% of all HSCR patients, suggesting the involvement of modifier genes and/or additional genetic or environmental risk factors. In complex disorders common polymorphic variants can be associated with the disease phenotype, thus modifying the risk of recurrence. To investigate whether sequence variants of the RET proto-oncogene may be associated with the development of the HSCR phenotype, we analysed 92 Italian patients for the 2508C > T synonymous substitution in exon 14 (S836S) finding that the T allele is clearly less frequent than in control individuals (Fisher exact test P = 0.0002). On the other hand, this RET variant allele is overrepresented in patients affected with medullary thyroid carcinoma. Assuming a direct effect of this single-nucleotide polymorphism in predisposing to RET associated pathologies, we have performed functional tests which excluded any possible involvement of the C and T alleles in DNA-protein binding, transcript stability and RNA splicing and editing.
机译:Hirschsprung病(HSCR)是一种遗传性疾病,其特征是远端胃肠道中不存在固有神经节细胞。 Ret-酪氨酸激酶或内皮素信号通路中涉及的不同易感基因有助于HSCR表型。有趣的是,在所有HSCR患者中仅30-50%检出了这些基因的改变,这表明修饰基因和/或其他遗传或环境危险因素的参与。在复杂的疾病中,常见的多态性变异可能与疾病表型有关,从而改变了复发的风险。为了研究RET原癌基因的序列变异是否可能与HSCR表型的发生有关,我们分析了92位意大利患者的外显子14(S836S)中的2508C> T同义替换,发现T等位基因的频率明显低于在对照个体中(Fisher精确检验P = 0.0002)。另一方面,该RET变异等位基因在甲状腺髓样癌患者中过高。假设这种单核苷酸多态性在诱发RET相关病理的直接作用中,我们进行了功能测试,该测试排除了C和T等位基因在DNA-蛋白质结合,转录本稳定性以及RNA剪接和编辑中的任何可能参与。

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