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Growth signaling promotes chronological aging in budding yeast by inducing superoxide anions that inhibit quiescence

机译:生长信号通过诱导抑制静止的超氧阴离子促进发芽酵母中的时间老化

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摘要

Inhibition of growth signaling pathways protects against aging and age-related diseases in parallel with reduced oxidative stress. The relationships between growth signaling, oxidative stress and aging remain unclear. Here we report that in Saccharomyces cerevisiae, alterations in growth signaling pathways impact levels of superoxide anions that promote chronological aging and inhibit growth arrest of stationary phase cells in G0/G1. Factors that decrease intracellular superoxide anions in parallel with enhanced longevity and more efficient G0/G1 arrest include genetic inactivation of growth signaling pathways that inhibit Rim15p, which activates oxidative stress responses, and downregulation of these pathways by caloric restriction. Caloric restriction also reduces superoxide anions independently of Rim15p by elevating levels of H2O2, which activates superoxide dismutases. In contrast, high glucose or mutations that activate growth signaling accelerate chronological aging in parallel with increased superoxide anions and reduced efficiency of stationary phase G0/G1 arrest. High glucose also activates DNA damage responses and preferentially kills stationary phase cells that fail to arrest growth in G0/G1. These findings suggest that growth signaling promotes chronological aging in budding yeast by elevating superoxide anions that inhibit quiescence and induce DNA replication stress. A similar mechanism likely contributes to aging and age-related diseases in complex eukaryotes.
机译:生长信号通路的抑制可防止衰老和与年龄有关的疾病,同时减少氧化应激。生长信号,氧化应激和衰老之间的关系仍然不清楚。在这里,我们报告在酿酒酵母中,生长信号通路的改变影响了超氧阴离子的水平,超氧阴离子促进了时序性衰老并抑制了G0 / G1中固定相细胞的生长停滞。与延长寿命和更有效的G0 / G1抑制同时降低细胞内超氧阴离子的因素包括抑制Rim15p的生长信号通路的遗传失活,Rim15p激活氧化应激反应,以及通过热量限制下调这些通路。热量限制还可以通过升高H2O2的水平来独立于Rim15p还原超氧阴离子,而H2O2可以激活超氧化物歧化酶。相反,高葡萄糖或激活生长信号的突变与超氧化物阴离子增加和固定相G0 / G1阻滞效率降低同时加速了时序老化。高葡萄糖还会激活DNA损伤反应,并优先杀死不能阻止G0 / G1生长的固定相细胞。这些发现表明,生长信号通过升高抑制静止并诱导DNA复制压​​力的超氧阴离子来促进发芽酵母中的时序老化。类似的机制可能导致复杂的真核生物衰老和与年龄有关的疾病。

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