Signal transduction and targeted therapy

Excess glutamine breakdown may cause cell aging by activating the arginine-mTORC1 pathway

Updated

Abstract

Essence

Hyperactive glutaminolysis was linked to senescence and aging through arginine production and persistent activation.

Evidence

Cellular, Drosophila, and mouse aging models with metabolomics and GLS1 or ASL interventions tested a glutaminase-ammonium/glutamate-arginine-CASTOR1-mTORC1 pathway.

Caveat

The work is mechanistic and model-based, so its relevance to human aging interventions remains untested.

Simplified

Key numbers

27-month-old mice vs. 3-month-old mice
Increased GLS Activity
GLS activities were markedly higher in aged mice.
102 vs. 59 days
Extended Lifespan
Median lifespan of GLS-KD flies compared to controls.
1.0168 × 10
Increased p70/S6K Phosphorylation
Log-rank value indicating survival probability in treated flies.

Full Text

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Funding

Competing interests

0 of 18
authors report competing interests
18 report none
PubMed

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