抗压力和生物系统的可靠性:对人类衰老、健康和长寿的遗传研究的见解

A. Yashin, K. Arbeev, L. Arbeeva, Deqing Wu, I. Akushevich, A. Kulminski, M. Kovtun, I. Zhbannikov, S. Ukraintseva
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引用次数: 0

摘要

生物有机体的抗逆性与寿命之间的关系已被广泛讨论并在实验中得到证实。关于遗传和非遗传因素在调节这种联系中的作用,我们所知甚少。早期的研究强调,实现这种联系的机制涉及个体衰老过程与外部挑战的相互作用。由于这种相互作用,Gompertz死亡率曲线的参数呈负相关。在上世纪上半叶世界发达地区的生存改善过程中也观察到这种相关性。死亡率的下降主要是由于外部和生活条件的有利变化以及保健方面的进步。令人惊讶的是,在个体携带的“长寿”等位基因数量排名的个体群体中,也观察到类似的生存变化模式。我们表明,这种现象可以解释为对应力的抵抗力增加,并表明当其组件冗余度增加时,在技术系统的可靠性中观察到类似的效果。基因型个体纵向数据的可用性为解决更复杂的问题提供了独特的机会,这些问题涉及人类衰老、抗逆性和长寿之间的遗传和非遗传因素的作用。为此,使用了人类死亡率和衰老的动态模型。我们展示了这种模型如何用于影响人类寿命的遗传和非遗传因素之间相互作用的基本过程的遗传分析。
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Resistance to Stresses and Reliability of Biological Systems: Insights for Genetic Studies of Human Aging, Health, and Longevity
Connection between stress resistance and longevity in biological organisms is widely discussed and confirmed experimentally. Much less is known about the roles of genetic and non-genetic factors in regulation of such connection. Earlier studies emphasized that mechanism that realizes such connection involves interplay between processes of individual aging and external challenges. As a result of such interplay the parameters of the Gompertz mortality curve are negatively correlated. Such correlation has been also observed in the process of survival improvement in developed part of the world during the first part of the last century. The mortality decline was mainly due to favorable changes in external and living conditions as well as progress in health care. Surprisingly, similar pattern of survival changes is observed in the groups of individuals ranked with respect to the number of "longevity" alleles carried by individuals. We showed that this phenomenon can be interpreted as an increase in resistance to stresses and showed that similar effect is observed in reliability of technical systems when redundancy of their components increases. The availability of longitudinal data for genotyped individuals opens unique opportunity to address more sophisticated questions about roles of genetic and non-genetic factors in connection between aging, stress resistance and longevity in humans. For this purpose the dynamic model of human mortality and aging is used. We show how such model can be used in genetic analyses of fundamental processes of interaction between genetic and non-genetic factors to influence human longevity.
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