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A computational approach to determine susceptibility to cancer by evaluating the deleterious effect of nsSNP in XRCC1 gene on binding interaction of XRCC1 protein with ligase III

机译:通过评估XRCC1基因中nsSNP对XRCC1蛋白与连接酶III结合相互作用的有害作用来确定癌症易感性的计算方法

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Several reports suggest that non-synonymous single nucleotide polymorphisms affect the function of XRCC1 which impairs DNA repair capacity and thus increases risk to diseases like cancer. In our study, we predicted the most damaging nsSNPs using a computational approach and analysed its functional impact on the XRCC1 and LIG3 interaction. SNP rs2307166 was predicted to be deleterious using eight software programs: SIFT, PolyPhen, PANTHER, PhD-SNP, nsSNPAnalyzer, SNPS&GO, SNAP and I-Mutant. Protein structural analysis was performed using Swiss PDB viewer, and PyMOL. Xenoview was used for molecular dynamic simulation and energy minimisation. Finally, PatchDock and FireDock were used to analyse the interactions of XRCC1 and LIG3. By comparing the results we found that the mutant protein has less binding energy and the interacting amino acids than native protein. In silico analysis predicted rs2307166 to be more damaging than three other extensively studied SNPs. Identification of this SNP will help in determining the susceptibility of the individual to cancer, their prognosis and further treatment. (C) 2015 Elsevier B.V. All rights reserved.
机译:一些报告表明,非同义的单核苷酸多态性影响XRCC1的功能,从而削弱了DNA修复能力,从而增加了患癌症等疾病的风险。在我们的研究中,我们使用计算方法预测了最具破坏性的nsSNP,并分析了其对XRCC1和LIG3相互作用的功能影响。使用八个软件程序,可以预测SNP rs2307166有害:SIFT,PolyPhen,PANTHER,PhD-SNP,nsSNPAnalyzer,SNPS&GO,SNAP和I-Mutant。蛋白质结构分析是使用Swiss PDB viewer和PyMOL进行的。 Xenoview用于分子动力学模拟和能量最小化。最后,使用PatchDock和FireDock分析XRCC1和LIG3的相互作用。通过比较结果,我们发现突变蛋白比天然蛋白具有更少的结合能和相互作用的氨基酸。在计算机分析中,预测rs2307166比其他三个经过广泛研究的SNP更具破坏性。鉴定该SNP将有助于确定个体对癌症的敏感性,其预后和进一步治疗。 (C)2015 Elsevier B.V.保留所有权利。

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