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Genomic Approach to Understand the Association of DNA Repair with Longevity and Healthy Aging Using Genomic Databases of Oldest-Old Population

机译:基因组学方法通过使用最老的人口基因组数据库来了解DNA修复与寿命和健康衰老的关联

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摘要

Aged population is increasing worldwide due to the aging process that is inevitable. Accordingly, longevity and healthy aging have been spotlighted to promote social contribution of aged population. Many studies in the past few decades have reported the process of aging and longevity, emphasizing the importance of maintaining genomic stability in exceptionally long-lived population. Underlying reason of longevity remains unclear due to its complexity involving multiple factors. With advances in sequencing technology and human genome-associated approaches, studies based on population-based genomic studies are increasing. In this review, we summarize recent longevity and healthy aging studies of human population focusing on DNA repair as a major factor in maintaining genome integrity. To keep pace with recent growth in genomic research, aging- and longevity-associated genomic databases are also briefly introduced. To suggest novel approaches to investigate longevity-associated genetic variants related to DNA repair using genomic databases, gene set analysis was conducted, focusing on DNA repair- and longevity-associated genes. Their biological networks were additionally analyzed to grasp major factors containing genetic variants of human longevity and healthy aging in DNA repair mechanisms. In summary, this review emphasizes DNA repair activity in human longevity and suggests approach to conduct DNA repair-associated genomic study on human healthy aging.
机译:由于不可避免的老龄化进程,全球老年人口在增加。因此,人们关注长寿和健康的老龄化,以促进老年人口的社会贡献。在过去的几十年中,许多研究报告了衰老和寿命的过程,强调了维持极长寿命人口的基因组稳定性的重要性。长寿的根本原因尚不清楚,因为其复杂性涉及多个因素。随着测序技术和人类基因组相关方法的进步,基于人群的基因组研究的研究正在增加。在这篇综述中,我们总结了最近的人类寿命和健康衰老研究,重点是将DNA修复作为维持基因组完整性的主要因素。为了与基因组研究的最新发展保持同步,还简要介绍了与衰老和寿命相关的基因组数据库。为了提出使用基因组数据库研究与DNA修复有关的长寿相关遗传变异的新方法,进行了基因组分析,重点研究了与DNA修复和长寿相关的基因。还对其生物网络进行了分析,以掌握DNA修复机制中包含人类寿命和健康衰老的遗传变异的主要因素。总而言之,本综述强调了人类长寿中的DNA修复活性,并提出了进行有关人类健康衰老的DNA修复相关基因组研究的方法。

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