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Identification of novel genes associated with longevity in Drosophila melanogaster - a computational approach

机译:鉴定与果蝇寿命有关的新基因-一种计算方法

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摘要

Despite a growing number of studies on longevity in , genetic factors influencing lifespan are still poorly understood. In this paper we propose a conceptually new approach for the identification of novel longevity-associated genes and potential target genes for SNPs in non-coding regions by utilizing the knowledge of co-location of various loci, governed by the three-dimensional architecture of the genome. Firstly, we created networks between genes/genomic regions harboring SNPs deemed to be significant in two longevity GWAS summary statistics datasets using intra- and inter-chromosomal interaction frequencies (Hi-C data) as a measure of co-location. These networks were further extended to include regions strongly interacting with previously selected regions. Using various network measures, literature search and additional bioinformatics resources, we investigated the plausibility of genes found to have genuine association with longevity. Several of the newly identified genes were common between the two GWAS datasets and these possessed human orthologs. We also found that the proportion of non-coding SNPs in borders between topologically associated domains is significantly higher than expected by chance. Assuming co-location, we investigated potential target genes for non-coding SNPs. This approach therefore offers a stepping stone to identification of novel genes and SNP targets linked to human longevity.
机译:尽管关于长寿的研究越来越多,但影响寿命的遗传因素仍然知之甚少。在本文中,我们提出了一种概念上新的方法,该方法可通过利用各个基因座的共定位知识来识别非编码区中新的与长寿相关的基因和SNP的潜在靶基因,基因组。首先,我们使用染色体内和染色体间的相互作用频率(Hi-C数据)作为共置位的量度,在两个被认为在两个长寿GWAS摘要统计数据集中具有重要意义的SNP的基因/基因组区域之间创建网络。这些网络进一步扩展为包括与先前选择的区域强烈交互的区域。使用各种网络手段,文献搜索和其他生物信息学资源,我们调查了与寿命长久有真正关联的基因的合理性。在两个GWAS数据集之间共有几个新发现的基因,它们具有人类直系同源基因。我们还发现,拓扑关联域之间边界中非编码SNP的比例大大高于偶然的预期。假设位于同一地点,我们调查了非编码SNP的潜在靶基因。因此,该方法为鉴定与人类寿命有关的新基因和SNP靶标奠定了基础。

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