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Aging atlas reveals cell-type-specific effects of pro-longevity strategies.


ABSTRACT: Organismal aging involves functional declines in both somatic and reproductive tissues. Multiple strategies have been discovered to extend lifespan across species. However, how age-related molecular changes differ among various tissues and how those lifespan-extending strategies slow tissue aging in distinct manners remain unclear. Here we generated the transcriptomic Cell Atlas of Worm Aging (CAWA, http://mengwanglab.org/atlas ) of wild-type and long-lived strains. We discovered cell-specific, age-related molecular and functional signatures across all somatic and germ cell types. We developed transcriptomic aging clocks for different tissues and quantitatively determined how three different pro-longevity strategies slow tissue aging distinctively. Furthermore, through genome-wide profiling of alternative polyadenylation (APA) events in different tissues, we discovered cell-type-specific APA changes during aging and revealed how these changes are differentially affected by the pro-longevity strategies. Together, this study offers fundamental molecular insights into both somatic and reproductive aging and provides a valuable resource for in-depth understanding of the diversity of pro-longevity mechanisms.

SUBMITTER: Gao SM 

PROVIDER: S-EPMC11257944 | biostudies-literature | 2024 Jul

REPOSITORIES: biostudies-literature

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Aging atlas reveals cell-type-specific effects of pro-longevity strategies.

Gao Shihong Max SM   Qi Yanyan Y   Zhang Qinghao Q   Guan Youchen Y   Lee Yi-Tang YT   Ding Lang L   Wang Lihua L   Mohammed Aaron S AS   Li Hongjie H   Fu Yusi Y   Wang Meng C MC  

Nature aging 20240530 7


Organismal aging involves functional declines in both somatic and reproductive tissues. Multiple strategies have been discovered to extend lifespan across species. However, how age-related molecular changes differ among various tissues and how those lifespan-extending strategies slow tissue aging in distinct manners remain unclear. Here we generated the transcriptomic Cell Atlas of Worm Aging (CAWA, http://mengwanglab.org/atlas ) of wild-type and long-lived strains. We discovered cell-specific,  ...[more]

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