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Sarcosine Is Uniquely Modulated by Aging and Dietary Restriction in Rodents and Humans.

Authors :
Walters, Ryan O.
Arias, Esperanza
Diaz, Antonio
Burgos, Emmanuel S.
Guan, Fangxia
Tiano, Simoni
Mao, Kai
Green, Cara L.
Qiu, Yungping
Shah, Hardik
Wang, Donghai
Hudgins, Adam D.
Tabrizian, Tahmineh
Tosti, Valeria
Shechter, David
Fontana, Luigi
Kurland, Irwin J.
Barzilai, Nir
Cuervo, Ana Maria
Promislow, Daniel E.L.
Source :
Cell Reports; Oct2018, Vol. 25 Issue 3, p663-663, 1p
Publication Year :
2018

Abstract

Summary A hallmark of aging is a decline in metabolic homeostasis, which is attenuated by dietary restriction (DR). However, the interaction of aging and DR with the metabolome is not well understood. We report that DR is a stronger modulator of the rat metabolome than age in plasma and tissues. A comparative metabolomic screen in rodents and humans identified circulating sarcosine as being similarly reduced with aging and increased by DR, while sarcosine is also elevated in long-lived Ames dwarf mice. Pathway analysis in aged sarcosine-replete rats identify this biogenic amine as an integral node in the metabolome network. Finally, we show that sarcosine can activate autophagy in cultured cells and enhances autophagic flux in vivo , suggesting a potential role in autophagy induction by DR. Thus, these data identify circulating sarcosine as a biomarker of aging and DR in mammalians and may contribute to age-related alterations in the metabolome and in proteostasis. Graphical Abstract Highlights • Dietary restriction is a stronger modulator of the rat metabolome than age • Sarcosine is similarly decreased by age and increased by DR in rodents and humans • Sarcosine is elevated in serum of long-lived Ames dwarf mice • Sarcosine activates macroautophagy in vitro and in vivo In a comparative metabolic screen of rodents and humans, Walters et al. show that circulating sarcosine is similarly reduced with aging and increased by dietary restriction. They demonstrate that sarcosine activates macroautophagy in cultured cells and in vivo , suggesting a role in improved proteostasis via dietary restriction. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
26391856
Volume :
25
Issue :
3
Database :
Complementary Index
Journal :
Cell Reports
Publication Type :
Academic Journal
Accession number :
132488686
Full Text :
https://doi.org/10.1016/j.celrep.2018.09.065