Peripheral insulin resistance in ILK-depleted mice by reduction of GLUT4 expression

Author:

Hatem-Vaquero Marco12,Griera Mercedes12,García-Jerez Andrea12,Luengo Alicia12,Álvarez Julia3,Rubio José A3,Calleros Laura12,Rodríguez-Puyol Diego241,Rodríguez-Puyol Manuel12,De Frutos Sergio12

Affiliation:

1. 1Department of Systems Biology, Physiology Unit, Universidad de Alcalá, Madrid, Spain

2. 2Instituto Reina Sofía de Investigación Renal and REDinREN from Instituto de Salud Carlos III, Madrid, Spain

3. 3Endocrinology and Nutrition Department, Hospital Príncipe de Asturias, Madrid, Spain

4. 4Biomedical Research Foundation and Nephrology Department, Hospital Príncipe de Asturias, Madrid, Spain

Abstract

The development of insulin resistance is characterized by the impairment of glucose uptake mediated by glucose transporter 4 (GLUT4). Extracellular matrix changes are induced when the metabolic dysregulation is sustained. The present work was devoted to analyze the possible link between the extracellular-to-intracellular mediator integrin-linked kinase (ILK) and the peripheral tissue modification that leads to glucose homeostasis impairment. Mice with general depletion of ILK in adulthood (cKD-ILK) maintained in a chow diet exhibited increased glycemia and insulinemia concurrently with a reduction of the expression and membrane presence of GLUT4 in the insulin-sensitive peripheral tissues compared with their wild-type littermates (WT). Tolerance tests and insulin sensitivity indexes confirmed the insulin resistance in cKD-ILK, suggesting a similar stage to prediabetes in humans. Under randomly fed conditions, no differences between cKD-ILK and WT were observed in the expression of insulin receptor (IR-B) and its substrate IRS-1 expressions. The IR-B isoform phosphorylated at tyrosines 1150/1151 was increased, but the AKT phosphorylation in serine 473 was reduced in cKD-ILK tissues. Similarly, ILK-blocked myotubes reduced their GLUT4 promoter activity and GLUT4 expression levels. On the other hand, the glucose uptake capacity in response to exogenous insulin was impaired when ILK was blocked in vivo and in vitro, although IR/IRS/AKT phosphorylation states were increased but not different between groups. We conclude that ILK depletion modifies the transcription of GLUT4, which results in reduced peripheral insulin sensitivity and glucose uptake, suggesting ILK as a molecular target and a prognostic biomarker of insulin resistance.

Publisher

Bioscientifica

Subject

Endocrinology,Endocrinology, Diabetes and Metabolism

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