microRNAs‐mediated regulation of insulin signaling in white adipose tissue during aging: Role of caloric restriction

Author:

Corrales Patricia1ORCID,Martin‐Taboada Marina1ORCID,Vivas‐García Yurena12,Torres Lucia1,Ramirez‐Jimenez Laura3,Lopez Yamila1,Horrillo Daniel1,Vila‐Bedmar Rocio1,Barber‐Cano Eloisa3,Izquierdo‐Lahuerta Adriana1,Peña‐Chilet Maria456,Martínez Carmen1,Dopazo Joaquín456,Ros Manuel1,Medina‐Gomez Gema1ORCID

Affiliation:

1. Department of Basic Sciences of Health, Area of Biochemistry and Molecular Biology Universidad Rey Juan Carlos, Alcorcon Madrid Spain

2. Metabolism and Cell Signalling Laboratory Spanish National Cancer Research Centre Madrid Spain

3. Genomics and Genetics Unit Centro de Investigación Príncipe Felipe Valencia Spain

4. Platform for Computational Medicine, Fundación Progreso y Salud Sevilla Spain

5. Systems and Computational Medicine Unit, Biomedical Institute of Seville (IBiS) Sevilla Spain

6. Plataforma BiER, Consorcio de Investigaciones Biomédicas en Red en Enfermedades Raras (CIBERER) Sevilla Spain

Abstract

AbstractCaloric restriction is a non‐pharmacological intervention known to ameliorate the metabolic defects associated with aging, including insulin resistance. The levels of miRNA expression may represent a predictive tool for aging‐related alterations. In order to investigate the role of miRNAs underlying insulin resistance in adipose tissue during the early stages of aging, 3‐ and 12‐month‐old male animals fed ad libitum, and 12‐month‐old male animals fed with a 20% caloric restricted diet were used. In this work we demonstrate that specific miRNAs may contribute to the impaired insulin‐stimulated glucose metabolism specifically in the subcutaneous white adipose tissue, through the regulation of target genes implicated in the insulin signaling cascade. Moreover, the expression of these miRNAs is modified by caloric restriction in middle‐aged animals, in accordance with the improvement of the metabolic state. Overall, our work demonstrates that alterations in posttranscriptional gene expression because of miRNAs dysregulation might represent an endogenous mechanism by which insulin response in the subcutaneous fat depot is already affected at middle age. Importantly, caloric restriction could prevent this modulation, demonstrating that certain miRNAs could constitute potential biomarkers of age‐related metabolic alterations.

Funder

Consejería de Educación, Juventud y Deporte, Comunidad de Madrid

Fundación Mapfre

Publisher

Wiley

Subject

Cell Biology,Aging

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