Mitochondrial fragmentation impairs insulin-dependent glucose uptake by modulating Akt activity through mitochondrial Ca2+ uptake
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2014Metadata
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Campo Sfeir, Andrea Estefanía del
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Mitochondrial fragmentation impairs insulin-dependent glucose uptake by modulating Akt activity through mitochondrial Ca2+ uptake
Author
- Campo Sfeir, Andrea Estefanía del;
- Parra Ortíz, María Valentina;
- Vásquez Trincado, César Alonso;
- Gutiérrez, Tomás;
- Morales, Pablo E.;
- López Crisosto, Camila;
- Bravo Sagua, Roberto;
- Navarro Márquez, Mario F.;
- Verdejo, Hugo E.;
- Contreras Ferrat, Ariel Eduardo;
- Troncoso Cotal, Rodrigo;
- Chiong Lay, Mario;
- Lavandero González, Sergio;
Abstract
Insulin is a major
regulator of glucose metabolism, stimulating its mitochondrial oxidation
in skeletal muscle cells. Mitochondria are dynamic organelles that
can undergo structural remodeling in order to cope with these everchanging
metabolic demands. However, the process by which mitochondrial
morphology impacts insulin signaling in the skeletal
muscle cells remains uncertain. To address this question, we silenced
the mitochondrial fusion proteins Mfn2 and Opa1 and assessed
insulin-dependent responses in L6 rat skeletal muscle cells. We found
that mitochondrial fragmentation attenuates insulin-stimulated Akt
phosphorylation, glucose uptake and cell respiratory rate. Importantly,
we found that insulin induces a transient rise in mitochondrial Ca2+
uptake, which was attenuated by silencing Opa1 or Mfn2. Moreover,
treatment with Ruthenium red, an inhibitor of mitochondrial Ca2+
uptake, impairs Akt signaling without affecting mitochondrial dynamics.
All together, these results suggest that control of mitochondrial
Ca2 uptake by mitochondrial morphology is a key event for insulininduced
glucose uptake.
General note
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Patrocinador
This work was supported by FONDECYT (Grant 1120212 to S. Lavandero,
3110114 to R. Troncoso, 1110180 to M. Chiong, and 3110170 to A. Contreras-
Ferrat), CONICYT (Grant Anillo ACT1111 to S. Lavandero and M. Chiong),
and FONDAP (Grant 15130011 to S. Lavandero). We are thankful for the PhD
and MSc fellowships from CONICYT Chile to A. del Campo, V. Parra, H. E.
Verdejo, P. E. Morales, R. Bravo-Sagua, M. F. Navarro-Marquez, and C.
López-Crisosto. V. Parra holds a postdoctoral international fellowship from
Bicentennial Program, CONICYT, Chile.
Identifier
URI: https://repositorio.uchile.cl/handle/2250/121889
DOI: doi:10.1152/ajpendo.00146.2013
Quote Item
Am J Physiol Endocrinol Metab 306: E1–E13, 2014
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