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Cataloguing functionally relevant polymorphisms in gene DNA ligase I: a computational approach

机译:在基因DNA连接酶I中对功能相关的多态性进行编目:一种计算方法

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摘要

A computational approach for identifying functionally relevant SNPs in gene LIG1 has been proposed. LIG1 is a crucial gene which is involved in excision repair pathways and mutations in this gene may lead to increase sensitivity towards DNA damaging agents. A total of 792 SNPs were reported to be associated with gene LIG1 in dbSNP. Different web server namely SIFT, PolyPhen, CUPSAT, FASTSNP, MAPPER and dbSMR were used to identify potentially functional SNPs in gene LIG1. SIFT, PolyPhen and CUPSAT servers predicted eleven nsSNPs to be intolerant, thirteen nsSNP to be damaging and two nsSNPs have the potential to destabilize protein structure. The nsSNP rs11666150 was predicted to be damaging by all three servers and its mutant structure showed significant increase in overall energy. FASTSNP predicted twenty SNPs to be present in splicing modifier binding sites while rSNP module from MAPPER server predicted nine SNPs to influence the binding of transcription factors. The results from the study may provide vital clues in establishing affect of polymorphism on phenotype and in elucidating drug response.
机译:已经提出了一种用于鉴定基因LIG1中功能相关的SNP的计算方法。 LIG1是至关重要的基因,参与切除修复途径,该基因中的突变可能导致对DNA损伤剂的敏感性增加。据报道,共有792个SNP与dbSNP中的LIG1基因相关。使用不同的Web服务器(即SIFT,PolyPhen,CUPSAT,FASTSNP,MAPPER和dbSMR)来识别基因LIG1中潜在的功能性SNP。 SIFT,PolyPhen和CUPSAT服务器预测11个nsSNP不耐受,十三个nsSNP具破坏性,而两个nsSNP可能使蛋白质结构不稳定。预测nsSNP rs11666150将被所有三台服务器破坏,并且其突变体结构显示总体能量显着增加。 FASTSNP预测剪接修饰子结合位点中存在20个SNP,而MAPPER服务器的rSNP模块预测9个SNP会影响转录因子的结合。该研究结果可能为确定多态性对表型的影响以及阐明药物反应提供重要线索。

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