蛋白质组
表型
生物
疾病
生物年龄
老化
蛋白质组学
生物信息学
遗传学
计算生物学
进化生物学
医学
基因
内科学
作者
Benoit Lehallier,David Gate,Nicholas Schaum,Tibor Nánási,Song Eun Lee,Hanadie Yousef,Patricia Morán Losada,Daniela Berdnik,Andreas Keller,Joe Verghese,Sanish Sathyan,Claudio Franceschi,Sofiya Milman,Nir Barzilai,Tony Wyss‐Coray
出处
期刊:Nature Medicine
[Springer Nature]
日期:2019-12-01
卷期号:25 (12): 1843-1850
被引量:561
标识
DOI:10.1038/s41591-019-0673-2
摘要
Aging is a predominant risk factor for several chronic diseases that limit healthspan1. Mechanisms of aging are thus increasingly recognized as potential therapeutic targets. Blood from young mice reverses aspects of aging and disease across multiple tissues2–10, which supports a hypothesis that age-related molecular changes in blood could provide new insights into age-related disease biology. We measured 2,925 plasma proteins from 4,263 young adults to nonagenarians (18–95 years old) and developed a new bioinformatics approach that uncovered marked non-linear alterations in the human plasma proteome with age. Waves of changes in the proteome in the fourth, seventh and eighth decades of life reflected distinct biological pathways and revealed differential associations with the genome and proteome of age-related diseases and phenotypic traits. This new approach to the study of aging led to the identification of unexpected signatures and pathways that might offer potential targets for age-related diseases. Aptamer-based proteomic analysis of plasma from healthy individuals aged 18–95 years reveals wave-like patterns of protein expression that are associated with age-related diseases and phenotypic traits.
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