Cancer Epigenetics and Nanomedicine Laboratory, Centro de Investigación en Nanomateriales y Nanotecnología-Consejo Superior de Investigaciones Científicas (CINN-CSIC), Universidad de Oviedo, 33011, Oviedo, Spain.
Instituto de Investigación Sanitaria del Principado de Asturias (ISPA-FINBA), Universidad de Oviedo, 33011, Oviedo, Spain.
Nat Commun. 2024 Jul 16;15(1):5829. doi: 10.1038/s41467-024-49608-z.
Aging involves the deterioration of organismal function, leading to the emergence of multiple pathologies. Environmental stimuli, including lifestyle, can influence the trajectory of this process and may be used as tools in the pursuit of healthy aging. To evaluate the role of epigenetic mechanisms in this context, we have generated bulk tissue and single cell multi-omic maps of the male mouse dorsal hippocampus in young and old animals exposed to environmental stimulation in the form of enriched environments. We present a molecular atlas of the aging process, highlighting two distinct axes, related to inflammation and to the dysregulation of mRNA metabolism, at the functional RNA and protein level. Additionally, we report the alteration of heterochromatin domains, including the loss of bivalent chromatin and the uncovering of a heterochromatin-switch phenomenon whereby constitutive heterochromatin loss is partially mitigated through gains in facultative heterochromatin. Notably, we observed the multi-omic reversal of a great number of aging-associated alterations in the context of environmental enrichment, which was particularly linked to glial and oligodendrocyte pathways. In conclusion, our work describes the epigenomic landscape of environmental stimulation in the context of aging and reveals how lifestyle intervention can lead to the multi-layered reversal of aging-associated decline.
衰老是指生物体功能的恶化,导致多种疾病的出现。环境刺激,包括生活方式,可以影响这个过程的轨迹,并可能被用作追求健康衰老的工具。为了评估表观遗传机制在这方面的作用,我们生成了雄性小鼠背侧海马体的组织和单细胞多组学图谱,这些动物在年轻时暴露于丰富环境形式的环境刺激下,在年老时也暴露于这种环境刺激下。我们展示了衰老过程的分子图谱,突出了两个不同的轴,一个与炎症有关,另一个与 mRNA 代谢的失调有关,涉及到功能 RNA 和蛋白质水平。此外,我们还报告了异染色质域的改变,包括双价染色质的丢失和异染色质开关现象的揭示,即组成型异染色质的丢失部分通过获得 facultative 异染色质得到缓解。值得注意的是,我们观察到在环境丰富的情况下,大量与衰老相关的改变在多组学上得到了逆转,这与神经胶质细胞和少突胶质细胞途径特别相关。总之,我们的工作描述了环境刺激在衰老背景下的表观基因组景观,并揭示了生活方式干预如何导致与衰老相关的衰退的多层次逆转。