Suppr超能文献

饮食改变而不限制热量摄入可维持衰老酵母的年轻表型。

Dietary change without caloric restriction maintains a youthful profile in ageing yeast.

机构信息

Epigenetics Programme, Babraham Institute, Cambridge, United Kingdom.

出版信息

PLoS Biol. 2023 Aug 29;21(8):e3002245. doi: 10.1371/journal.pbio.3002245. eCollection 2023 Aug.

Abstract

Caloric restriction increases lifespan and improves ageing health, but it is unknown whether these outcomes can be separated or achieved through less severe interventions. Here, we show that an unrestricted galactose diet in early life minimises change during replicative ageing in budding yeast, irrespective of diet later in life. Average mother cell division rate is comparable between glucose and galactose diets, and lifespan is shorter on galactose, but markers of senescence and the progressive dysregulation of gene expression observed on glucose are minimal on galactose, showing that these are not intrinsic aspects of replicative ageing but rather associated processes. Respiration on galactose is critical for minimising hallmarks of ageing, and forced respiration during ageing on glucose by overexpression of the mitochondrial biogenesis factor Hap4 also has the same effect though only in a fraction of cells. This fraction maintains Hap4 activity to advanced age with low senescence and a youthful gene expression profile, whereas other cells in the same population lose Hap4 activity, undergo dramatic dysregulation of gene expression and accumulate fragments of chromosome XII (ChrXIIr), which are tightly associated with senescence. Our findings support the existence of two separable ageing trajectories in yeast. We propose that a complete shift to the healthy ageing mode can be achieved in wild-type cells through dietary change in early life without caloric restriction.

摘要

热量限制可以延长寿命并改善衰老健康状况,但尚不清楚这些结果是否可以分开或通过不那么严格的干预措施来实现。在这里,我们表明,在早期生命中摄入无限制的半乳糖饮食可以最小化出芽酵母在复制性衰老过程中的变化,而与后期的饮食无关。葡萄糖和半乳糖饮食之间的母细胞平均分裂率相当,半乳糖饮食的寿命较短,但在葡萄糖上观察到的衰老和基因表达逐渐失调的标志物在半乳糖上最小,表明这些不是复制性衰老的固有方面,而是相关过程。半乳糖呼吸对于最小化衰老特征至关重要,而过表达线粒体生物发生因子 Hap4 也可以在葡萄糖上强制呼吸,从而达到相同的效果,尽管只是在一部分细胞中。这部分细胞将 Hap4 活性维持到高龄,衰老程度低,基因表达谱年轻,而同一群体中的其他细胞则失去 Hap4 活性,经历基因表达的剧烈失调,并积累染色体 XII(ChrXIIr)的片段,这些片段与衰老密切相关。我们的发现支持酵母中存在两种可分离的衰老轨迹。我们提出,通过在早期生命中通过饮食改变而不进行热量限制,可以使野生型细胞完全转变为健康的衰老模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99a5/10464975/d7994b101aa3/pbio.3002245.g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验