Department of Genetics, Stanford University Medical Center, Stanford, CA 94305, USA.
Philos Trans R Soc Lond B Biol Sci. 2011 Jan 12;366(1561):43-50. doi: 10.1098/rstb.2010.0259.
Ageing in humans is typified by the decline of physiological functions in various organs and tissues leading to an increased probability of death. Some individuals delay, escape or survive much of this age-related decline and live past age 100. Studies comparing centenarians to average-aged individuals have found polymorphisms in genes that are associated with long life, including APOE and FOXOA3, which have been replicated many times. However, the associations found in humans account for small percentages of the variance in lifespan and many other gene associations have not been replicated in additional populations. Therefore, ageing is probably a highly polygenic trait. In humans, it is important to also consider differences in age-related decline that occur within and among tissues. Longitudinal data of age-related traits can be used in association studies to test for polymorphisms that predict how an individual will change over time. Transcriptional and genetic association studies of different tissues have revealed common and unique pathways involved in human ageing. Genomic convergence is a method that combines multiple types of functional genomic information such as transcriptional profiling, expression quantitative trait mapping and gene association. The genomic convergence approach has been used to implicate the gene MMP20 in human kidney ageing. New human genetics technologies are continually in development and may lead to additional breakthroughs in human ageing in the near future.
人类的衰老表现为各种器官和组织的生理功能下降,导致死亡的概率增加。一些人会延迟、逃避或在很大程度上避免这种与年龄相关的衰退,从而活到 100 岁以上。比较百岁老人和一般人群的研究发现,与长寿相关的基因多态性,包括 APOE 和 FOXOA3,已经被多次复制。然而,在人类中发现的相关性只占寿命方差的很小一部分百分比,许多其他基因相关性在其他人群中没有被复制。因此,衰老可能是一个高度多基因特征。在人类中,还需要考虑组织内和组织间发生的与年龄相关的衰退差异。与年龄相关特征的纵向数据可用于关联研究,以测试预测个体随时间变化的多态性。对不同组织的转录组和遗传关联研究揭示了人类衰老过程中涉及的共同和独特途径。基因组收敛是一种结合多种类型的功能基因组信息的方法,如转录组分析、表达数量性状映射和基因关联。基因组收敛方法已被用于暗示人类肾脏衰老中的 MMP20 基因。新的人类遗传学技术不断发展,可能在不久的将来在人类衰老研究方面取得额外突破。