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Meta-analysis on blood transcriptomic studies identifies consistently coexpressed protein–protein interaction modules as robust markers of human aging

机译:血液转录组学研究的荟萃分析确定一致表达的蛋白质间相互作用模块是人类衰老的有力标志

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摘要

The bodily decline that occurs with advancing age strongly impacts on the prospects for future health and life expectancy. Despite the profound role of age in disease etiology, knowledge about the molecular mechanisms driving the process of aging in humans is limited. Here, we used an integrative network-based approach for combining multiple large-scale expression studies in blood (2539 individuals) with protein–protein Interaction (PPI) data for the detection of consistently coexpressed PPI modules that may reflect key processes that change throughout the course of normative aging. Module detection followed by a meta-analysis on chronological age identified fifteen consistently coexpressed PPI modules associated with chronological age, including a highly significant module (P = 3.5 × 10−38) enriched for ‘T-cell activation’ marking age-associated shifts in lymphocyte blood cell counts (R2 = 0.603; P = 1.9 × 10−10). Adjusting the analysis in the compendium for the ‘T-cell activation’ module showed five consistently coexpressed PPI modules that robustly associated with chronological age and included modules enriched for ‘Translational elongation’, ‘Cytolysis’ and ‘DNA metabolic process’. In an independent study of 3535 individuals, four of five modules consistently associated with chronological age, underpinning the robustness of the approach. We found three of five modules to be significantly enriched with aging-related genes, as defined by the GenAge database, and association with prospective survival at high ages for one of the modules including ASF1A. The hereby-detected age-associated and consistently coexpressed PPI modules therefore may provide a molecular basis for future research into mechanisms underlying human aging.
机译:随着年龄的增长而发生的身体衰退严重影响未来健康和预期寿命的前景。尽管年龄在疾病病因中起着深远的作用,但是关于驱动人类衰老过程的分子机制的知识仍然有限。在这里,我们使用了基于网络的集成方法,将血液(2539名个体)中的多个大规模表达研究与蛋白质-蛋白质相互作用(PPI)数据相结合,以检测一致的共表达的PPI模块,这些模块可能反映了整个过程中变化的关键过程。规范老化的过程。进行模块检测,然后按时间顺序进行荟萃分析,确定了与时间顺序相关的15个持续共表达的PPI模块,包括高度浓缩的模块(P = 3.5×10 -38 ),该模块富含'T细胞激活'标志着淋巴细胞血细胞计数与年龄相关的变化(R 2 = 0.603; P = 1.9×10 -10 )。在针对“ T细胞激活”模块的简编中进行的分析调整显示出五个始终如一的共表达PPI模块,这些模块与按年代划分的年龄密切相关,并且包括针对“翻译延伸”,“细胞裂解”和“ DNA代谢过程”而丰富的模块。在一项对3535名个体的独立研究中,五个模块中的四个始终与按时间顺序排列的年龄相关联,巩固了该方法的鲁棒性。我们发现五个模块中的三个模块显着丰富了与衰老相关的基因(由GenAge数据库定义),并且与其中一个模块(包括ASF1A)在高年龄时的预期存活率相关。因此,据此检测到的与年龄相关且始终共表达的PPI模块可以为未来研究人类衰老的机制提供分子基础。

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