首页> 外文期刊>The American Journal of Human Genetics >Variation in the miRNA-433 binding site of FGF20 confers risk for Parkinson disease by overexpression of alpha-synuclein.
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Variation in the miRNA-433 binding site of FGF20 confers risk for Parkinson disease by overexpression of alpha-synuclein.

机译:FGF20的miRNA-433结合位点的变异通过α-突触核蛋白的过表达赋予帕金森氏病风险。

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Parkinson disease (PD) is a common neurodegenerative disorder caused by environmental and genetic factors. We have previously shown linkage of PD to chromosome 8p. Subsequently, fibroblast growth factor 20 (FGF20) at 8p21.3-22 was identified as a risk factor in several association studies. To identify the risk-conferring polymorphism in FGF20, we performed genetic and functional analysis of single-nucleotide polymorphisms within the gene. In a sample of 729 nuclear families with 1089 affected and 1165 unaffected individuals, the strongest evidence of association came from rs12720208 in the 3' untranslated region of FGF20. We show in several functional assays that the risk allele for rs12720208 disrupts a binding site for microRNA-433, increasing translation of FGF20 in vitro and in vivo. In a cell-based system and in PD brains, this increase in translation of FGF20 is correlated with increased alpha-synuclein expression, which has previously been shown to cause PD through both overexpression and point mutations. We suggest a novel mechanism of action for PD risk in which the modulation of the susceptibility gene's translation by common variations interfere with the regulation mechanisms of microRNA. We propose this is likely to be a common mechanism of genetic modulation of individual susceptibility to complex disease.
机译:帕金森病(PD)是由环境和遗传因素引起的常见神经退行性疾病。我们之前已经显示了PD与8p染色体的连锁。随后,在数个关联研究中,在8p21.3-22处的成纤维细胞生长因子20(FGF20)被确定为危险因素。为了确定FGF20中赋予风险的多态性,我们对基因内的单核苷酸多态性进行了遗传和功能分析。在729个有1089个受影响家庭和1165个未受影响个体的核心家庭的样本中,最有力的证据来自FGF20 3'非翻译区的rs12720208。我们在几种功能测定中表明,rs12720208的风险等位基因破坏了microRNA-433的结合位点,增加了FGF20在体外和体内的翻译。在基于细胞的系统和PD大脑中,FGF20的这种翻译增加与增加的α-突触核蛋白表达相关,先前已证明它会通过过表达和点突变导致PD。我们建议PD风险的一种新的作用机制,其中通过常见变异对易感基因翻译的调节会干扰microRNA的调控机制。我们认为这很可能是个体对复杂疾病的易感性遗传调节的常见机制。

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