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首页> 外文期刊>Journal of cellular biochemistry. >Investigation of deleterious effects of nsSNPs in the POT1 POT1 gene: a structural genomics‐based approach to understand the mechanism of cancer development
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Investigation of deleterious effects of nsSNPs in the POT1 POT1 gene: a structural genomics‐based approach to understand the mechanism of cancer development

机译:NSSNPS在POT1 POT1基因中的有害作用的研究:一种了解癌症发展机制的结构基因组学

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摘要

Abstract Protection of telomere 1 (POT1) is one of the key components of shelterin complex, implicated in maintaining the telomere homeostasis, and thus stability of the eukaryotic genome. A large number of non‐synonymous single nucleotide polymorphisms (nsSNPs) in the POT1 gene have been reported to cause varieties of human diseases, including cancer. In recent years, a number of mutations in POT1 has been markedly increased, and interpreting the effect of these large numbers of mutations to understand the mechanism of associated diseases seems impossible using experimental approaches. Herein, we employ varieties of computational methods such as PROVEAN, PolyPhen‐2, SIFT, PoPMuSiC, SDM2, STRUM, and MAESTRO to identify the effects of 387 nsSNPs on the structure and function of POT1 protein. We have identified about 183 nsSNPs as deleterious and termed them as “high‐confidence nsSNPs.” Distribution of these high‐confidence nsSNPs demonstrates that the mutation in oligonucleotide binding domain 1 is highly deleterious (one in every three nsSNPs), and high‐confidence nsSNPs show a strong correlation with residue conservation. The structure analysis provides a detailed insights into the structural changes occurred in consequence of conserved mutations which lead to the cancer progression. This study, for the first time, offers a newer prospective on the role of POT1 mutations on the structure, function, and their relation to associated diseases.
机译:摘要保护端子1(POT1)是防护罩复合物的关键部件之一,涉及维持端粒稳态,从而稳定性基因组。据报道,Pot1基因中的大量非同义单核苷酸多态性(NSSNPS)引起包括癌症的人类疾病。近年来,Pot1中的许多突变已经显着增加,并解释了这些大量突变的效果,了解相关疾病的机制使用实验方法似乎不可能。在此,我们使用各种计算方法,如促使,多酚-2,Sift,Popmusic,SDM2,strum和Maestro,以确定387 NSSNP对Pot1蛋白的结构和功能的影响。我们已经确定了大约183个NSSnps,作为有害的人,并称为“高信心NSSNP”。这些高置信度NSSNP的分布证明寡核苷酸结合结构域1的突变是高度有害的(每三个NSSNPS中的一个),并且高置信NSSNPS与残留保守具有强烈的相关性。结构分析提供了对癌症进展导致癌症进展的保守突变的结构变化的详细见解。本研究首次为Pot1突变对结构,功能及其与相关疾病的关系的作用提供了更新的前瞻性。

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