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In Silico Analysis of SNPs in PARK2 and PINK1 Genes That Potentially Cause Autosomal Recessive Parkinson Disease

机译:在计算机分析中可能导致常染色体隐性帕金森病的PARK2和PINK1基因中的SNP

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摘要

Introduction. Parkinson's disease (PD) is a common neurodegenerative disorder. Mutations in PINK1 are the second most common agents causing autosomal recessive, early onset PD. We aimed to identify the pathogenic SNPs in PARK2 and PINK1 using in silico prediction software and their effect on the structure, function, and regulation of the proteins. Materials and Methods. We carried out in silico prediction of structural effect of each SNP using different bioinformatics tools to predict substitution influence on protein structure and function. Result. Twenty-one SNPs in PARK2 gene were found to affect transcription factor binding activity. 185 SNPs were found to affect splicing. Ten SNPs were found to affect the miRNA binding site. Two SNPs rs55961220 and rs56092260 affected the structure, function, and stability of Parkin protein. In PINK1 gene only one SNP (rs7349186) was found to affect the structure, function, and stability of the PINK1 protein. Ten SNPs were found to affect the microRNA binding site. Conclusion. Better understanding of Parkinson's disease caused by mutations in PARK2 and PINK1 genes was achieved using in silico prediction. Further studies should be conducted with a special consideration of the ethnic diversity of the different populations.
机译:介绍。帕金森氏病(PD)是常见的神经退行性疾病。 PINK1突变是引起常染色体隐性遗传,早发性PD的第二大常见药物。我们旨在使用计算机模拟软件识别PARK2和PINK1中的致病性SNP及其对蛋白质的结构,功能和调节的影响。材料和方法。我们使用不同的生物信息学工具对每种SNP的结构效果进行了计算机模拟预测,以预测取代对蛋白质结构和功能的影响。结果。发现PARK2基因中的21个SNP影响转录因子结合活性。发现185个SNP影响剪接。发现十个SNP影响miRNA结合位点。两个SNP rs55961220和rs56092260影响Parkin蛋白的结构,功能和稳定性。在PINK1基因中,仅发现一个SNP(rs7349186)影响PINK1蛋白的结构,功能和稳定性。发现十个SNP影响microRNA结合位点。结论。使用计算机模拟预测可以更好地理解由PARK2和PINK1基因突变引起的帕金森氏病。进一步研究应特别考虑不同人群的种族多样性。

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