Translational fidelity and longevity are genetically linked

B Boyang Zheng W Weijie Zhang G Gongwang Yu W Wenjun Shi (School of Chemistry and Chemical Engineering, Nantong Key Laboratory of Green Hydrogen-Ammonia Energy Storage and Conversion) S Shuyun Deng X Xiaoyi Zhang J Jingyu Chen Z Ziwei Zhou Y Yuyan Shan W Wanting Wu E Erping Long X Xiaoshu Chen J Jian-Rong Yang

Abstract

Abstract Aging is a series of adverse changes over time that increases mortality risk. Several hypotheses have been proposed to explain aging, including Leslie Orgel’s Error-Catastrophe Theory, which asserts that translation errors erode the translational machinery, become self-amplifying, and eventually lead to death. Evidence for the theory is scarce, especially regarding intra-specific fidelity-longevity correlations. Here, we demonstrate that the correlation can be hidden by the constrained evolution of translational fidelity, but remains detectable in long-lived samples. Measuring the lifespan and translational fidelity of a panel of BY × RM yeast recombinant haploid progenies, we validate the fidelity-longevity correlation. QTL analyses reveal that both fidelity and longevity are most strongly associated with a locus encoding vacuolar protein sorting-associated protein 70(VPS70). Replacing VPS70 in BY by its RM allele reduces translation error by ~8.0% and extends lifespan by ~8.9% through a vacuole-dependent mechanism. Our results support the impact of translational fidelity on intra-specific longevity variation.

Article Details

Volume / Issue Vol. 16, Issue 1
Published August 13, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (13)

B

Boyang Zheng

W

Weijie Zhang

G

Gongwang Yu

W

Wenjun Shi

School of Chemistry and Chemical Engineering, Nantong Key Laboratory of Green Hydrogen-Ammonia Energy Storage and Conversion

S

Shuyun Deng

X

Xiaoyi Zhang

J

Jingyu Chen

Z

Ziwei Zhou

Y

Yuyan Shan

W

Wanting Wu

E

Erping Long

X

Xiaoshu Chen

J

Jian-Rong Yang