首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >A SNP site in pri-miR-124 changes mature miR-124 expression but no contribution to Alzheimer's disease in a Mongolian population
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A SNP site in pri-miR-124 changes mature miR-124 expression but no contribution to Alzheimer's disease in a Mongolian population

机译:pri-miR-124中的一个SNP位点可改变成熟的miR-124表达,但对蒙古族人群的阿尔茨海默氏病无影响

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Increasing evidence shows that single nucleotide polymorphisms (SNPs) or mutations in microRNAs (miRNAs) sequence may affect the processing and function of miRNAs and participate in the occurrence of diseases. Although many SNPs of miRNAs were found, their functions in the pathological process of nerve cells were only just emerging. In the present study, the effect of the SNP of one neuronal miRNA, miR-124, on miRNA biogenesis and human genetic disease was investigated using in vitro cell line model and Alzheimer's disease (AD) in the Mongolian population. Bioinformatics prediction showed that a common G/C polymorphism designated rs531564 was found in the pri-miR-124 and the G allele changed the formation of a ring-shaped structure in the predicted secondary structure of the pri-miRNA for miR-124-1. Northern blot and real-time PCR analysis showed that the amount of mature miR-124 from the C/G heterozygosity of rs531564 was increased compared with the CC or GG homozygosity of rs531564. The expression of mature miR-124 from GG homozygosity was also higher than that from CC homozygosity. But in an association study of AD patients and controls, neither genotype nor allele distribution difference was found in AD patients compared with controls. Collectively, the present study is the first to evaluate the relationship between miR-124 and AD in the Mongolian population. SNP rs531564 of miR-124 may not represent a risk factor in the development of AD among Mongolian population.
机译:越来越多的证据表明,单核苷酸多态性(SNP)或microRNA(miRNA)序列中的突变可能会影响miRNA的加工和功能,并参与疾病的发生。尽管发现了许多miRNA的SNP,但它们在神经细胞病理过程中的功能才刚刚出现。在本研究中,使用体外细胞系模型和阿尔茨海默氏病(AD)在蒙古族人群中研究了一种神经元miRNA miR-124的SNP对miRNA生物发生和人类遗传疾病的影响。生物信息学预测表明,在pri-miR-124中发现了常见的G / C多态性,称为rs531564,G等位基因改变了miR-124-1的pri-miRNA预测二级结构中环状结构的形成。 Northern杂交和实时PCR分析表明,与rs531564的CC或GG纯合子相比,来自rs531564的C / G杂合子的成熟miR-124数量增加。 GG纯合子表达的成熟miR-124也高于CC纯合子。但是在对AD患者和对照的关联研究中,与对照相比,在AD患者中均未发现基因型或等位基因分布差异。总体而言,本研究是第一个评估miR-124与蒙古族人群AD之间关系的研究。 miR-124的SNP rs531564可能不代表蒙古族人群发展AD的危险因素。

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