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May 24, 2011Autophagy148 citationsOpen Access

Characterization of macroautophagic flux in vivo using a leupeptin-based assay

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JHJeffrey A. HaspelRSRahamthulla S. ShaikEIEmeka Ifedigbo

Key Points

  • To develop and validate a quantitative in vivo assay measuring LC3b protein turnover after leupeptin administration to evaluate macroautophagic flux across different mammalian tissues.
  • Administered the protease inhibitor leupeptin in vivo to mice to quantify the accumulation and degradation kinetics of LC3b, LC3a, p62, GABARAP, and GATE-16 in multiple organs.
  • Evaluated macroautophagic flux under physiological nutrient alterations (starvation and refeeding) and genetic perturbation using beclin 1 heterozygous mice versus wild-type littermates.
  • LC3b accumulation rate following leupeptin treatment was highest in the liver and lowest in the spleen.
  • LC3a and p62 degraded with kinetics similar to LC3b, whereas GABARAP and GATE-16 did not exhibit rapid turnover in mouse liver.
  • Macroautophagic flux increased during nutrient starvation, decreased upon refeeding, and showed significant reduction in beclin 1 heterozygous mice compared to wild-type controls.

Abstract

Macroautophagy is a highly conserved catabolic process that is crucial for organ homeostasis in mammals. However, methods to directly measure macroautophagic activity (or flux) in vivo are limited. In this study we developed a quantitative macroautophagic flux assay based on measuring LC3b protein turnover in vivo after administering the protease inhibitor leupeptin. Using this assay we then characterized basal macroautophagic flux in different mouse organs. We found that the rate of LC3b accumulation after leupeptin treatment was greatest in the liver and lowest in spleen. Interestingly we found that LC3a, an ATG8/LC3b homologue and the LC3b-interacting protein p62 were degraded with similar kinetics to LC3b. However, the LC3b-related proteins GABARAP and GATE-16 were not rapidly turned over in mouse liver, implying that different LC3b homologues may contribute to macroautophagy via distinct mechanisms. Nutrient starvation augmented macroautophagic flux as measured by our assay, while refeeding the animals after a period of starvation significantly suppressed flux. We also confirmed that beclin 1 heterozygous mice had reduced basal macroautophagic flux compared to wild-type littermates. These results illustrate the usefulness of our leupeptin-based assay for studying the dynamics of macroautophagy in mice.

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Cite This Study

Haspel et al. (2011) studied this question.

synapsesocial.com/papers/69df50276324afb55d5926e9https://doi.org/10.4161/auto.7.6.15100
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