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Updated: Jul 18, 2026

In Vitro and In Vivo Detection of Mitophagy in Human Cells, C. Elegans, and Mice
Published on: November 22, 2017
Calpain is required for macroautophagy in mammalian cells
Francesca Demarchi1, Cosetta Bertoli, Tamara Copetti
1Laboratorio Nazionale Consorzio Interuniversitario Biotecnologie, 34012 Trieste, Italy.
Abstract:
Ubiquitously expressed micro- and millicalpain, which both require the calpain small 1 (CAPNS1) regulatory subunit for function, play important roles in numerous biological and pathological phenomena. We have previously shown that the product of GAS2, a gene specifically induced at growth arrest, is an inhibitor of millicalpain and that its overexpression sensitizes cells to apoptosis in a p53-dependent manner (Benetti, R., G. Del Sal, M. Monte, G. Paroni, C. Brancolini, and C. Schneider. 2001. EMBO J. 20:2702-2714). More recently, we have shown that calpain is also involved in nuclear factor kappaB activation and its relative prosurvival function in response to ceramide, in which calpain deficiency strengthens the proapoptotic effect of ceramide (Demarchi, F., C. Bertoli, P.A. Greer, and C. Schneider. 2005. Cell Death Differ. 12:512-522). Here, we further explore the involvement of calpain in the apoptotic switch and find that in calpain-deficient cells, autophagy is impaired with a resulting dramatic increase in apoptotic cell death. Immunostaining of the endogenous autophagosome marker LC3 and electron microscopy experiments demonstrate that autophagy is impaired in CAPNS1-deficient cells. Accordingly, the enhancement of lysosomal activity and long-lived protein degradation, which normally occur upon starvation, is also reduced. In CAPNS1-depleted cells, ectopic LC3 accumulates in early endosome-like vesicles that may represent a salvage pathway for protein degradation when autophagy is defective.
Insights
Calpain deficiency impairs autophagy, leading to increased cell death. In calpain-small 1 (CAPNS1)-deficient cells, autophagy markers like LC3 accumulate, suggesting a defect in the autophagosome pathway.
Area of Science:
- Cellular Biology
- Molecular Biology
- Biochemistry
Background:
- Calpains, regulated by CAPNS1, are crucial in biological and pathological processes.
- Previous work linked GAS2 to millicalpain inhibition and p53-dependent apoptosis.
- Calpain also influences NF-kappaB activation and ceramide-induced apoptosis.
Purpose of the Study:
- To investigate the role of calpain in the apoptotic switch.
- To determine the effect of calpain deficiency on autophagy.
- To explore the consequences of impaired autophagy in CAPNS1-deficient cells.
Main Methods:
- Immunostaining of the autophagosome marker LC3.
- Electron microscopy to assess autophagy.
- Analysis of lysosomal activity and protein degradation.
- Observation of LC3 localization in CAPNS1-depleted cells.
Main Results:
- Autophagy is significantly impaired in CAPNS1-deficient cells.
- Lysosomal activity and protein degradation are reduced in these cells.
- LC3 accumulates in early endosome-like vesicles in CAPNS1-depleted cells, indicating a potential alternative degradation pathway.
Conclusions:
- Calpain activity, specifically via CAPNS1, is essential for proper autophagy function.
- Impaired autophagy in calpain-deficient cells contributes to increased apoptotic cell death.
- Defective autophagy may lead to the accumulation of LC3 in endosomal vesicles, representing a compensatory mechanism.
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