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Fat-specific Dicer deficiency accelerates aging and mitigates several effects of dietary restriction in mice
C. G. Felipe, L. O. Jéssica, Bruna B. Brandão, Beatriz Alves Guerra, Ismael D. Silva, Andrea Frontini, Thomas Thomou, Loris Sartini, Saverio Cinti, C. Ronald Kahn, William T. Festuccia, Alicia J. Kowaltowski, Marcelo A. Mori
Aging · 2016 · ▲ 60 citations
Deregulated nutrient-sensing
Mitochondrial dysfunction
Caloric restriction
Rapamycin / mTOR inhibition
Mouse
Abstract
Aging increases the risk of type 2 diabetes, and this can be prevented by dietary restriction (DR). We have previously shown that DR inhibits the downregulation of miRNAs and their processing enzymes - mainly Dicer - that occurs with aging in mouse white adipose tissue (WAT). Here we used fat-specific Dicer knockout mice (AdicerKO) to understand the contributions of adipose tissue Dicer to the metabolic effects of aging and DR. Metabolomic data uncovered a clear distinction between the serum metabolite profiles of Lox control and AdicerKO mice, with a notable elevation of branched-chain amino acids (BCAA) in AdicerKO. These profiles were associated with reduced oxidative metabolism and increased lactate in WAT of AdicerKO mice and were accompanied by structural and functional changes in mitochondria, particularly under DR. AdicerKO mice displayed increased mTORC1 activation in WAT and skeletal muscle, where Dicer expression is not affected. This was accompanied by accelerated age-associated insulin resistance and premature mortality. Moreover, DR-induced insulin sensitivity was abrogated in AdicerKO mice. This was reverted by mTOR(definition)-inhibiting drug studied for extending healthspan and lifespan." style="text-decoration:underline dotted; text-underline-offset:2px; cursor:help;">rapamycin(definition) injection, demonstrating that insulin resistance in AdicerKO mice is caused by mTORC1 hyperactivation. Our study evidences a DR-modulated role for WAT Dicer in controlling metabolism and insulin resistance.
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- DOI
- 10.18632/aging.100970
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- 2026-09-09 MST
Cite this
APA
Felipe, C.G., Jéssica, L.O., Brandão, B.B., Guerra, B.A., Silva, I.D., Frontini, A., Thomou, T., Sartini, L., Cinti, S., Kahn, C.R., Festuccia, W.T., Kowaltowski, A.J., & Mori, M.A. (2016). Fat-specific Dicer deficiency accelerates aging and mitigates several effects of dietary restriction in mice. <em>Aging</em>. https://doi.org/10.18632/aging.100970
Vancouver
Felipe CG, Jéssica LO, Brandão BB, Guerra BA, Silva ID, Frontini A, et al. Fat-specific Dicer deficiency accelerates aging and mitigates several effects of dietary restriction in mice. Aging. 2016. doi:10.18632/aging.100970.
BibTeX
@article{c2016Fatspe,
title = {Fat-specific Dicer deficiency accelerates aging and mitigates several effects of dietary restriction in mice},
author = {C. G. Felipe and L. O. Jéssica and Bruna B. Brandão and Beatriz Alves Guerra and Ismael D. Silva and Andrea Frontini and Thomas Thomou and Loris Sartini and Saverio Cinti and C. Ronald Kahn and William T. Festuccia and Alicia J. Kowaltowski and Marcelo A. Mori},
journal = {Aging},
year = {2016},
doi = {10.18632/aging.100970},
}
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