Gutierrez J Ignacio, Edgar Claudia, Tyler Jessica K
Department of Pathology and Laboratory Medicine, Weill Cornell Medicine, 1300 York Avenue, New York, NY 10065, USA.
BCMB Graduate Program, Weill Cornell Graduate School of Biomedical Sciences, New York, NY 10065, USA.
bioRxiv. 2025 Sep 3:2025.09.02.673772. doi: 10.1101/2025.09.02.673772.
Overexpression of the mRNA binding protein Ssd1 extends the yeast replicative lifespan. Using microfluidics to trap and image single cells throughout their lifespans, we find that lifespan extension by Ssd1 overexpression is accompanied by formation of cytoplasmic Ssd1 foci. The age-dependent Ssd1 foci are condensates that appear dynamically in a cell cycle-dependent manner and their failure to resolve during mitosis coincided with the end of lifespan. Ssd1 overexpression was epistatic with calorie restriction (CR) for lifespan extension and yeast overexpressing Ssd1 or undergoing CR were resistant to iron supplementation-induced lifespan shortening while their lifespans were reduced by iron chelation. The nuclear translocation of the Aft1 transcriptional regulator of the iron regulon occurred during aging in a manner that predicted remaining lifespan, but was prevented by CR. Accordingly, age-dependent induction of the Fit2 and Arn1 high-affinity iron transporters within the iron regulon was reduced by CR and Ssd1 overexpression. Consistent with age-dependent activation of the iron regulon, intracellular iron accumulated during aging but was prevented by CR and Ssd1 overexpression. Moreover, lifespan extension by Ssd1 overexpression or CR was epistatic to inactivation of the iron regulon. These studies reveal that CR and Ssd1 overexpression extend the yeast replicative lifespan by blocking deleterious age-dependent iron uptake, identifying novel therapeutic targets for lifespan extension.
mRNA结合蛋白Ssd1的过表达可延长酵母的复制寿命。利用微流控技术在单细胞的整个寿命过程中进行捕获和成像,我们发现Ssd1过表达导致的寿命延长伴随着细胞质中Ssd1聚集物的形成。随年龄增长出现的Ssd1聚集物是凝聚物,以细胞周期依赖的方式动态出现,它们在有丝分裂期间未能分解与寿命结束相吻合。Ssd1过表达在延长寿命方面与卡路里限制(CR)具有上位性,过表达Ssd1或进行CR的酵母对铁补充诱导的寿命缩短具有抗性,而它们的寿命会因铁螯合而缩短。铁调节子的Aft1转录调节因子的核转位在衰老过程中以一种可预测剩余寿命的方式发生,但被CR阻止。因此,CR和Ssd1过表达可减少铁调节子内Fit2和Arn1高亲和力铁转运蛋白随年龄的诱导。与铁调节子的年龄依赖性激活一致,细胞内铁在衰老过程中积累,但被CR和Ssd1过表达阻止。此外,Ssd1过表达或CR导致的寿命延长对铁调节子的失活具有上位性。这些研究表明,CR和Ssd1过表达通过阻断有害的年龄依赖性铁摄取来延长酵母的复制寿命,从而确定了延长寿命的新治疗靶点。