Chronic Kidney Disease Causes Defects in Signaling through the Insulin Receptor Substrate/Phosphatidylinositol 3-Kinase/Akt Pathway
Open Access
- 1 May 2006
- journal article
- Published by Wolters Kluwer Health in Journal of the American Society of Nephrology
- Vol. 17 (5) , 1388-1394
- https://doi.org/10.1681/asn.2004100842
Abstract
Complications of chronic kidney disease (CKD) include depressed responses to insulin/IGF-1 and accelerated muscle proteolysis as a result of activation of caspase-3 and the ubiquitin-proteasome system. Experimentally, proteolysis in muscle cells occurs when there is suppression of phosphatidylinositol 3-kinase (PI3-K) activity. Postreceptor signaling through the insulin receptor substrate (IRS)/PI3-K/Akt pathway was evaluated in muscles of acidotic, CKD and pair-fed control rats under physiologic conditions and in response to a dose of insulin that quickly stimulated the pathway. Basal IRS-1–associated PI3-K activity was suppressed by CKD; IRS-2–associated PI3-K activity was increased. The basal level of activated Akt in CKD muscles also was low, indicating that the higher IRS-2–associated PI3-K activity did not compensate for the reduced IRS-1–associated PI3-K activity. Insulin treatment overcame this abnormality. The low IRS-1–associated PI3-K activity in muscle was not due to a decrease in IRS-1 protein, but there was a higher amount of the PI3-K p85 subunit protein without a concomitant increase in the p110 catalytic subunit, offering a potential explanation for the lower IRS-1–associated PI3-K activity. Eliminating the acidosis of CKD partially corrected the decrease in basal IRS-1–associated PI3-K activity and protein degradation in muscle. It is concluded that in CKD, acidosis and an increase in the PI3-K p85 subunit are mechanisms that contribute to suppression of PI3-K activity in muscle, and this leads to accelerated muscle proteolysis.Keywords
This publication has 40 references indexed in Scilit:
- Acidosis impairs insulin receptor substrate-1-associated phosphoinositide 3-kinase signaling in muscle cells: consequences on proteolysisAmerican Journal of Physiology-Renal Physiology, 2004
- The IGF-1/PI3K/Akt Pathway Prevents Expression of Muscle Atrophy-Induced Ubiquitin Ligases by Inhibiting FOXO Transcription FactorsMolecular Cell, 2004
- TOR SignalingScience's STKE, 2003
- Differential Roles of Insulin Receptor Substrates in the Anti-apoptotic Function of Insulin-like Growth Factor-1 and InsulinPublished by Elsevier ,2002
- Specific Increase in p85α Expression in Response to Dexamethasone Is Associated with Inhibition of Insulin-like Growth Factor-I Stimulated Phosphatidylinositol 3-Kinase Activity in Cultured Muscle CellsPublished by Elsevier ,1997
- 4PS/Insulin Receptor Substrate (IRS)-2 Is the Alternative Substrate of the Insulin Receptor in IRS-1-deficient MicePublished by Elsevier ,1995
- Effect of physiologic hyperinsulinemia on skeletal muscle protein synthesis and breakdown in man.Journal of Clinical Investigation, 1987
- Protein synthesis and degradation in skeletal muscle of chronically uremic ratsKidney International, 1986
- Specific defects in insulin-mediated muscle metabolism in acute uremiaKidney International, 1985
- Insulin resistance in uremia mediated by postbinding defectsKidney International, 1982