Genome-wide analysis of brain age identifies 59 associated loci and unveils relationships with mental and physical health.

IF 19.4 Q1 CELL BIOLOGY
Philippe Jawinski, Helena Forstbach, Holger Kirsten, Frauke Beyer, Arno Villringer, A Veronica Witte, Markus Scholz, Stephan Ripke, Sebastian Markett
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Abstract

Neuroimaging and machine learning are advancing research into the mechanisms of biological aging. In this field, 'brain age gap' has emerged as a promising magnetic resonance imaging-based biomarker that quantifies the deviation between an individual's biological and chronological age of the brain. Here we conducted an in-depth genomic analysis of the brain age gap and its relationships with over 1,000 health traits. Genome-wide analyses in up to 56,348 individuals unveiled a heritability of 23-29% attributable to common genetic variants and highlighted 59 associated loci (39 novel). The leading locus encompasses MAPT, encoding the tau protein central to Alzheimer's disease. Genetic correlations revealed relationships with mental health, physical health, lifestyle and socioeconomic traits, including depressed mood, diabetes, alcohol intake and income. Mendelian randomization indicated a causal role of high blood pressure and type 2 diabetes in accelerated brain aging. Our study highlights key genes and pathways related to neurogenesis, immune-system-related processes and small GTPase binding, laying the foundation for further mechanistic exploration.

对大脑年龄的全基因组分析确定了59个相关位点,并揭示了与精神和身体健康的关系。
神经成像和机器学习正在推动对生物衰老机制的研究。在这个领域,“脑年龄差距”已经成为一种很有前途的基于磁共振成像的生物标志物,它可以量化个体大脑的生物学年龄和实足年龄之间的偏差。在这里,我们对大脑年龄差距及其与1000多种健康特征的关系进行了深入的基因组分析。对多达56348个个体的全基因组分析揭示了23-29%的遗传率,归因于常见的遗传变异,并突出了59个相关位点(39个新颖的)。主要基因座包含MAPT,编码阿尔茨海默病的核心tau蛋白。遗传相关性揭示了心理健康、身体健康、生活方式和社会经济特征(包括抑郁情绪、糖尿病、酒精摄入量和收入)之间的关系。孟德尔随机化表明高血压和2型糖尿病在脑老化加速中的因果作用。我们的研究突出了与神经发生、免疫系统相关过程和小GTPase结合相关的关键基因和途径,为进一步的机制探索奠定了基础。
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来源期刊
CiteScore
14.70
自引率
0.00%
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