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In silico approach to the analysis of SNPs in the human APAF1 gene

机译:在人APAF1基因中SNP分析的硅方法

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The apoptotic protease activating factor 1 ( APAF1 ) gene encodes a cytoplasmic protein that initiates apoptosis and is a crucial factor in the mitochondria-dependent death pathway. APAF1 is implicated in many pathways such as apoptosis, neurodegenerative diseases, and cancer. The purpose of this study was to predict deleterious/damaging SNPs in the APAF1 gene via in silico analysis. To this end, APAF1 missense SNPs were obtained from the NCBI dbSNP database. In silico analysis of the missense SNPs was carried out by using publicly available online software tools. The stabilization and three-dimensional modeling of mutant proteins were also determined by using the I-Mutant 2.0 and Project HOPE webservers, respectively. In total, 772 missense SNPs were found in the APAF1 gene from the NCBI dbSNP database, 18 SNPs of which were demonstrated to be deleterious or damaging. Of those, 13 SNPs had a decreasing effect on protein stability, while the other 5 SNPs had an increasing effect. Based on the modeling results, some dissimilarities of mutant type amino acids from wild-type amino acids such as size, charge, and hydrophobicity were revealed. The SNPs predicted to be deleterious in this study might be used in the selection of target SNPs for genotyping in disease association studies. Therefore, we could suggest that the present study could pave the way for future experimental studies.
机译:凋亡蛋白酶激活因子1(APAF1)基因编码一种引发细胞凋亡的细胞质蛋白,是线粒体依赖性死亡途径中的关键因素。 APAF1涉及许多途径,例如细胞凋亡,神经变性疾病和癌症。本研究的目的是通过硅分析预测APAF1基因中的有害/损伤SNP。为此,从NCBI DBSNP数据库获得APAF1密码SNP。在Silico分析中,通过使用公开可用的在线软件工具进行密封SNP。突变蛋白的稳定化和三维建模也通过使用I-突变体2.0和项目希望的Webservers测定。总共有772个麦克义SNP,来自NCBI DBSNP数据库的APAF1基因,18个SNP被证明是有害或损害的。其中,13个SNP对蛋白质稳定性的影响降低,而其他5个SNP效果越来越多。基于造型结果,揭示了来自野生型氨基酸的突变型氨基酸的一些异化,如尺寸,电荷和疏水性。预测在该研究中预测有害的SNP可能用于选择疾病协会研究中的靶SNP进行基因分型。因此,我们可以建议本研究可以为未来的实验研究铺平道路。

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