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首页> 外文期刊>Mechanisms of Ageing and Development >A LINE-1 component to human aging: do LINE elements exact a longevity cost for evolutionary advantage?
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A LINE-1 component to human aging: do LINE elements exact a longevity cost for evolutionary advantage?

机译:LINE-1是人类衰老的一个组成部分:LINE元素是否会为进化优势付出长寿的代价?

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Advancing age remains the largest risk factor for devastating diseases, such as heart disease, stroke, and cancer. The mechanisms by which advancing age predisposes to disease are now beginning to unfold, due in part, to genetic and environmental manipulations of longevity in lower organisms. Converging lines of evidence suggest that DNA damage may be a final common pathway linking several proposed mechanisms of aging. The present review forwards a theory for an additional aging pathway that involves modes of inherent genetic instability. Long interspersed nuclear elements (LINEs) are endogenous non-LTR retrotransposons that compose about 20% of the human genome. The LINE-1 (L1) gene products, ORF1p and ORF2p, possess mRNA binding, endonuclease, and reverse transcriptase activity that enable retrotransposition. While principally active only during embryogenesis, L1 transcripts are detected in adult somatic cells under certain conditions. The present hypothesis proposes that L1s act as an 'endogenous clock', slowly eroding genomic integrity by competing with the organism's double-strand break repair mechanism. Thus, while L1s are an accepted mechanism of genetic variation fueling evolution, it is proposed that longevity is negatively impacted by somatic L1 activity. The theory predicts testable hypotheses about the relationship between L1 activity, DNA repair, healthy aging, and longevity.
机译:年龄增长仍然是破坏性疾病(例如心脏病,中风和癌症)的最大风险因素。年龄增长易患疾病的机制现在已开始展开,部分原因是低等生物对寿命的遗传和环境操纵。越来越多的证据表明,DNA损伤可能是连接几种提出的衰老机制的最终共同途径。本审查提出了一种涉及固有遗传不稳定性模式的额外衰老途径的理论。长时间散布的核元件(LINE)是内源性非LTR逆转座子,占人类基因组的20%。 LINE-1(L1)基因产物ORF1p和ORF2p具有mRNA结合,核酸内切酶和逆转录酶活性,可逆转录。尽管L1转录本仅在胚胎发生过程中才具有活性,但在某些条件下在成年体细胞中可以检测到L1转录本。本假设提出L1充当“内源时钟”,通过与生物体的双链断裂修复机制竞争而逐渐侵蚀基因组完整性。因此,尽管L1s是促进进化的遗传变异的公认机制,但有人提出寿命受到L1体细胞活性的负面影响。该理论预测了有关L1活性,DNA修复,健康衰老和寿命之间关系的可检验假说。

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