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Sci Rep ; 10(1): 21628, 2020 12 10.
Article in English | MEDLINE | ID: mdl-33303821

ABSTRACT

Diabetic nephropathy (DN), a microvascular complication of diabetes, is the leading cause of end-stage renal disease worldwide. Multiple studies have shown that podocyte dysfunction is a central event in the progression of the disease. Beside chronic hyperglycemia, dyslipidemia can induce insulin resistance and dysfunction in podocytes. However, the exact mechanisms of free fatty acid (FFA)-induced podocyte insulin unresponsiveness are poorly understood. We used a type 2 diabetic mouse model (db/db) and mouse podocytes exposed to palmitic acid for 24 h followed by an insulin stimulation. Renal function and pathology were evaluated at 25 weeks of age to confirm the DN development. Our results demonstrate that saturated FFA activated the serine/threonine kinases IκB kinase (IKK)ß/IκBα and mTORC1/S6K1, but not protein kinase C and c-jun N-terminal kinase, in podocytes and glomeruli of db/db mice. Activation of both kinases promoted serine 307 phosphorylation of IRS1, a residue known to provoke IRS1 inhibition. Using IKK, mTORC1 and ceramide production inhibitors, we were able to blunt IRS1 serine 307 phosphorylation and restore insulin stimulation of Akt. In conclusion, our results indicate that FFA and diabetes contribute to insulin resistance through the activation of IKKß and S6K1 leading to podocyte dysfunction and DN.


Subject(s)
Fatty Acids/metabolism , I-kappa B Kinase/metabolism , Insulin Receptor Substrate Proteins/antagonists & inhibitors , Insulin Resistance , Mechanistic Target of Rapamycin Complex 1/metabolism , Podocytes/metabolism , Animals , Diabetic Nephropathies/genetics , Diabetic Nephropathies/pathology , Insulin/metabolism , Kidney/physiopathology , Mice , Phosphorylation , Receptors, Leptin/genetics , Serine/metabolism , Signal Transduction
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