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A Comprehensive In Silico Analysis of the Functional and Structural Impact of Nonsynonymous SNPs in the ABCA1 Transporter Gene

机译:全面的计算机模拟分析ABCA1转运蛋白基因中非同义SNP的功能和结构影响

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Disease phenotypes and defects in function can be traced to nonsynonymous single nucleotide polymorphisms (nsSNPs), which are important indicators of action sites and effective potential therapeutic approaches. Identification of deleterious nsSNPs is crucial to characterize the genetic basis of diseases, assess individual susceptibility to disease, determinate molecular and therapeutic targets, and predict clinical phenotypes. In this study using PolyPhen2 and MutPred in silico algorithms, we analyzed the genetic variations that can alter the expression and function of the ABCA1 gene that causes the allelic disorders familial hypoalphalipoproteinemia and Tangier disease. Predictions were validated with published results fromin vitro, in vivo, and human studies. Out of a total of 233 nsSNPs, 80 (34.33%) were found deleterious by both methods. Among these 80 deleterious nsSNPs found, 29 (12.44%) rare variants resulted highly deleterious with a probability >0.8. We have observed that mostly variants with verified functional effect in experimental studies are correctly predicted as damage variants by MutPred and PolyPhen2 tools. Still, the controversial results of experimental approaches correspond to nsSNPs predicted as neutral by both methods, or contradictory predictions are obtained for them. A total of seventeen nsSNPs were predicted as deleterious by PolyPhen2, which resulted neutral by MutPred. Otherwise, forty two nsSNPs were predicted as deleterious by MutPred, which resulted neutral by PolyPhen2.
机译:疾病表型和功能缺陷可以追溯到非同义单核苷酸多态性(nsSNPs),这是作用部位和有效潜在治疗方法的重要指标。鉴定有害的nsSNPs对于表征疾病的遗传基础,评估个体对疾病的易感性,确定分子和治疗靶标以及预测临床表型至关重要。在本研究中,使用计算机软件中的PolyPhen2和MutPred,我们分析了遗传变异,这些变异可以改变ABCA1基因的表达和功能,从而导致等位基因家族性低α脂蛋白血症和丹吉尔病。预测已通过体外,体内和人体研究的公开结果进行了验证。两种方法在总共233 nsSNPs中发现80种(34.33%)有害。在发现的这80种有害nsSNP中,有29种(12.44%)罕见变体产生高度有害,概率> 0.8。我们已经观察到,通过MutPred和PolyPhen2工具可以将大多数在实验研究中具有经过验证的功能效果的变体正确预测为损伤变体。尽管如此,实验方法的争议性结果仍对应于两种方法都预测为中性的nsSNP,或者获得了相互矛盾的预测。 PolyPhen2预测总共有17个nsSNP有害,而MutPred预测中性。否则,MutPred预测有42个nsSNP有害,而PolyPhen2导致其为中性。

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