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Consideration of pathogenicity of nsSNVs in CDKN2A gene, as a new tumor marker for leukemia, using bioinformatics methods

机译:使用生物信息学方法考虑nsSNVs在CDKN2A基因中的致病性,作为白血病的新肿瘤标志物

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CDKN2A as a tumor suppressor gene (TSG) encodes p14 and p16 that they are tumor suppressor proteins and cell cycle regulators. Downregulation of these proteins causes various cancers. Sequence deletions or promoter hypermethylation lead to downregulation of these proteins. Also, point mutations can be caused malfunction or dysfunction of proteins. The aim of this study is definition of pathogenicity of non-synonymous single nucleotide variants (nsSNVs). We study three nsSNVs including rs104894095, rs786204195 and rs104894098 from NCBI/dbSNP databank. Then, these nsSNVs are considered by bioinformatics tools such as SIFT, PolyPhen-2, I-Mutant2.0, PANTHER, P-Mut, ExPASy/ProtScale, PEPTIDE 2.0 web server and PyMOL software. Plot of hydrophobicity of rs104894098 (V126D) is significantly changed. Also, we study hydrogen bonds length and atom distances in Aspartic acid substituted Valine in position 126 by PyMOL software. These parameters are compared with wild type protein. Finally, we find that rs786204195 and rs104894095 have destructive effects. But, rs104894098 (V126D) is deleterious because polar contacts, protein stability and hydrophobicity are changed in mutant form. This theory should be proved with experimental studies.
机译:CDKN2A作为肿瘤抑制基因(TSG)编码p14和p16,它们是肿瘤抑制蛋白和细胞周期调节剂。这些蛋白质的下调导致各种癌症。序列缺失或启动子高甲基化导致这些蛋白的下调。同样,点突变可能导致蛋白质的功能失常或功能障碍。这项研究的目的是定义非同义单核苷酸变体(nsSNVs)的致病性。我们研究了来自NCBI / dbSNP数据库的三个nsSNV,包括rs104894095,rs786204195和rs104894098。然后,通过生物信息学工具(例如SIFT,PolyPhen-2,I-Mutant2.0,PANTHER,P-Mut,ExPASy / ProtScale,PEPTIDE 2.0 Web服务器和PyMOL软件)考虑这些nsSNV。 rs104894098(V126D)的疏水性图发生了明显变化。另外,我们通过PyMOL软件研究了位置126的天冬氨酸取代的缬氨酸中的氢键长度和原子距离。将这些参数与野生型蛋白进行比较。最后,我们发现rs786204195和rs104894095具有破坏性作用。但是,rs104894098(V126D)有害,因为极性接触,蛋白质稳定性和疏水性以突变形式改变。该理论应通过实验研究加以证明。

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