跨多器官系统的异质性衰老的多组学基础。

IF 11.1 Q1 CELL BIOLOGY
Jie Xiong, Xiaoting Zhu, Yutong Guo, Hao Tang, Chengji Dong, Bo Wang, Mengran Liu, Zhaoyue Li, Yingfeng Tu
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引用次数: 0

摘要

衰老是慢性疾病和死亡率的主要决定因素,但器官特异性衰老轨迹各不相同,这种异质性背后的分子基础尚不清楚。为了阐明这一点,我们整合了基因组学、表观基因组学、转录组学、蛋白质组学和代谢组学数据,采用后全基因组关联研究方法系统地研究了9种器官特异性衰老时钟和4种基于血液的表观遗传时钟的分子机制。我们揭示了这些衰老相关性状之间的遗传相关性和特定表型集群,确定了异质性衰老的优先遗传药物靶点,并阐明了异质性衰老介导的下游蛋白质组学和代谢组学效应。我们构建了跨多器官系统的异质性衰老的跨层分子相互作用网络,并表征了这种异质性的可检测生物标志物。综合这些发现,我们开发了一个基于R/ shine的框架,提供了异质性衰老的综合多组学分子景观,从而促进对衰老异质性的理解,并为精确医学策略提供信息,以延缓器官特异性衰老,预防或治疗其相关的慢性疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-omic underpinnings of heterogeneous aging across multiple organ systems.

Aging is the main determinant of chronic diseases and mortality, yet organ-specific aging trajectories vary, and the molecular basis underlying this heterogeneity remains unclear. To elucidate this, we integrated genomic, epigenomic, transcriptomic, proteomic, and metabolomic data, employing post-genome-wide association study methodologies to systematically investigate the molecular mechanisms of nine organ-specific aging clocks and four blood-based epigenetic clocks. We uncovered genetic correlations and specific phenotypic clusters among these aging-related traits, identified prioritized genetic drug targets for heterogeneous aging, and elucidated downstream proteomic and metabolomic effects mediated by heterogeneous aging. We constructed a cross-layer molecular interaction network of heterogeneous aging across multiple organ systems and characterized detectable biomarkers of this heterogeneity. Integrating these findings, we developed an R/Shiny-based framework that provides a comprehensive multi-omic molecular landscape of heterogeneous aging, thereby advancing the understanding of aging heterogeneity and informing precision medicine strategies to delay organ-specific aging and prevent or treat its associated chronic diseases.

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