Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, VA, USA.
Program in Developmental Biology, Baylor College of Medicine, Houston, TX, USA.
Nat Aging. 2024 Jul;4(7):998-1013. doi: 10.1038/s43587-024-00631-1. Epub 2024 May 30.
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.
生物体的衰老涉及体组织和生殖组织的功能下降。已经发现了多种延长寿命的策略来跨越物种。然而,不同组织中与年龄相关的分子变化有何不同,以及这些延长寿命的策略如何以不同的方式减缓组织衰老仍不清楚。在这里,我们生成了野生型和长寿品系的线虫衰老转录组细胞图谱(CAWA,http://mengwanglab.org/atlas)。我们发现了所有体组织和生殖细胞类型中细胞特异性、与年龄相关的分子和功能特征。我们为不同的组织开发了转录组衰老时钟,并定量确定了三种不同的延长寿命策略如何以不同的方式减缓组织衰老。此外,通过对不同组织中可变多聚腺苷酸化(APA)事件的全基因组分析,我们发现了衰老过程中细胞类型特异性的 APA 变化,并揭示了这些变化如何受到延长寿命策略的不同影响。总之,这项研究为体组织和生殖衰老提供了基本的分子见解,并为深入了解延长寿命的机制多样性提供了有价值的资源。