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Metabolic effects of fasting on human and mouse blood in vivo

Federico Pietrocola, Yohann Demont, Francesca Castoldi, David Enot, Sylvère Durand, Michaëla Semeraro, Elisa Elena Baracco, Jonathan Pol, José Manuel Bravo‐San Pedro, Chloé Bordenave, Sarah Lévesque, Juliette Humeau, Alexis Chery, Didier Métivier, Frank Madeo

Autophagy · 2017 · ▲ 105 citations

Abstract

Starvation is a strong physiological stimulus of macroautophagy/autophagy(definition). In this study, we addressed the question as to whether it would be possible to measure autophagy in blood cells after nutrient deprivation. Fasting of mice for 48 h (which causes ∼20% weight loss) or starvation of human volunteers for up to 4 d (which causes <2% weight loss) provokes major changes in the plasma metabolome, yet induces only relatively minor alterations in the intracellular metabolome of circulating leukocytes. White blood cells from mice and human volunteers responded to fasting with a marked reduction in protein lysine acetylation, affecting both nuclear and cytoplasmic compartments. In circulating leukocytes from mice that underwent 48-h fasting, an increase in LC3B lipidation (as assessed by immunoblotting and immunofluorescence) only became detectable if the protease inhibitor leupeptin was injected 2 h before drawing blood. Consistently, measurement of an enhanced autophagic flux was only possible if white blood cells from starved human volunteers were cultured in the presence or absence of leupeptin. Whereas all murine leukocyte subpopulations significantly increased the number of LC3B+ puncta per cell in response to nutrient deprivation, only neutrophils from starved volunteers showed signs of activated autophagy (as determined by a combination of multi-color immunofluorescence, cytofluorometry and image analysis). Altogether, these results suggest that white blood cells are suitable for monitoring autophagic flux. In addition, we propose that the evaluation of protein acetylation in circulating leukocytes can be adopted as a biochemical marker of organismal energetic status.

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OpenAlex
DOI
10.1080/15548627.2016.1271513
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2026-09-07 MST

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APA
Pietrocola, F., Demont, Y., Castoldi, F., Enot, D., Durand, S., Semeraro, M., Baracco, E.E., Pol, J., Pedro, J.M.B., Bordenave, C., Lévesque, S., Humeau, J., Chery, A., Métivier, D., Madeo, F., Maiuri, M.C., &amp; Kroemer, G. (2017). Metabolic effects of fasting on human and mouse blood in vivo. <em>Autophagy</em>. https://doi.org/10.1080/15548627.2016.1271513
Vancouver
Pietrocola F, Demont Y, Castoldi F, Enot D, Durand S, Semeraro M, et al. Metabolic effects of fasting on human and mouse blood in vivo. Autophagy. 2017. doi:10.1080/15548627.2016.1271513.
BibTeX
@article{federico2017Metabo, title = {Metabolic effects of fasting on human and mouse blood in vivo}, author = {Federico Pietrocola and Yohann Demont and Francesca Castoldi and David Enot and Sylvère Durand and Michaëla Semeraro and Elisa Elena Baracco and Jonathan Pol and José Manuel Bravo‐San Pedro and Chloé Bordenave and Sarah Lévesque and Juliette Humeau and Alexis Chery and Didier Métivier and Frank Madeo and Maria Chiara Maiuri and Guido Kroemer}, journal = {Autophagy}, year = {2017}, doi = {10.1080/15548627.2016.1271513}, }

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