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对NADH/NAD失衡的耐受性预示着衰老和抗衰老干预。

Tolerance to NADH/NAD imbalance anticipates aging and anti-aging interventions.

作者信息

Alonso-Lavin Alvar J, Bajić Djordje, Poyatos Juan F

机构信息

Logic of Genomic Systems Laboratory (CNB-CSIC), Darwin 3, Campus de Cantoblanco, 28049 Madrid, Spain.

Department of Ecology and Evolutionary Biology, Yale University, New Haven, CT, USA.

出版信息

iScience. 2021 Jun 8;24(7):102697. doi: 10.1016/j.isci.2021.102697. eCollection 2021 Jul 23.

Abstract

Redox couples coordinate cellular function, but the consequences of their imbalances are unclear. This is somewhat associated with the limitations of their experimental quantification. Here we circumvent these difficulties by presenting an approach that characterizes fitness-based tolerance profiles to redox couple imbalances using an representation of metabolism. Focusing on the NADH/NAD redox couple in yeast, we demonstrate that reductive disequilibria generate metabolic syndromes comparable to those observed in cancer cells. The tolerance of yeast mutants to redox disequilibrium can also explain 30% of the variability in their experimentally measured chronological lifespan. Moreover, by predicting the significance of some metabolites to help stand imbalances, we correctly identify nutrients underlying mechanisms of pathology, lifespan-protecting molecules, or caloric restriction mimetics. Tolerance to redox imbalances becomes, in this way, a sound framework to recognize properties of the aging phenotype while providing a consistent biological rationale to assess anti-aging interventions.

摘要

氧化还原对协调细胞功能,但其失衡的后果尚不清楚。这在一定程度上与它们实验定量的局限性有关。在这里,我们提出了一种方法来规避这些困难,该方法使用代谢的一种表示来表征基于适应性的对氧化还原对失衡的耐受性概况。聚焦于酵母中的NADH/NAD氧化还原对,我们证明还原失衡会产生与癌细胞中观察到的代谢综合征相当的代谢综合征。酵母突变体对氧化还原失衡的耐受性也可以解释其实验测量的时序寿命中30%的变异性。此外,通过预测一些代谢物对帮助承受失衡的重要性,我们正确地识别了病理机制、寿命保护分子或热量限制模拟物背后的营养物质。这样,对氧化还原失衡的耐受性就成为一个可靠的框架,用于识别衰老表型的特性,同时为评估抗衰老干预措施提供一致的生物学原理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fe0/8239738/61e78cdcc492/fx1.jpg

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