Quantitative and temporal analysis of autophagy: Differential Response to amino acid and glucose starvation

K Katie R. Martin S Stephanie L. Celano J Jessica D. Guillaume R Ryan D. Sheldon (Mass Spectrometry Core, Van Andel Institute) R Russell G. Jones J Jeffrey P. MacKeigan

Abstract

Autophagy is a highly conserved, intracellular recycling process by which cytoplasmic contents are degraded in the lysosome. This process occurs at a low level constitutively; however, it is induced robustly in response to stressors, in particular, starvation of critical nutrients such as amino acids and glucose. That said, the relative contribution of these inputs is ambiguous, and many starvation medias are poorly defined or devoid of multiple nutrients. Here, we set out to create a quantitative dataset of autophagy across multiple stages in single, living cells, measured under normal growth conditions and during nutrient starvation of amino acids or glucose. We found that autophagy is induced by starvation of amino acids, but not glucose, in U2OS cells, and that MTORC1-mediated ULK1 regulation and autophagy are tightly linked to amino acid levels. While autophagy is engaged immediately during amino acid starvation, a heightened response occurs during a period marked by transcriptional upregulation of autophagy genes during sustained starvation. Finally, we demonstrated that cells immediately return to their initial, low-autophagy state when nutrients are restored, highlighting the dynamic relationship between autophagy and environmental conditions.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 21, Issue 2
Published February 04, 2026
Pages e0340957
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (6)

K

Katie R. Martin

S

Stephanie L. Celano

J

Jessica D. Guillaume

R

Ryan D. Sheldon

Mass Spectrometry Core, Van Andel Institute

R

Russell G. Jones

J

Jeffrey P. MacKeigan