Literature DB >> 24824652

FFA-induced hepatic insulin resistance in vivo is mediated by PKCδ, NADPH oxidase, and oxidative stress.

Sandra Pereira1, Edward Park1, Yusaku Mori1, C Andrew Haber1, Ping Han1, Toyoyoshi Uchida1, Laura Stavar2, Andrei I Oprescu3, Khajag Koulajian1, Alexander Ivovic1, Zhiwen Yu2, Deling Li2, Thomas A Bowman4, Jay Dewald5, Jamel El-Benna6, David N Brindley5, Roger Gutierrez-Juarez7, Tony K T Lam1, Sonia M Najjar4, Robert A McKay8, Sanjay Bhanot8, I George Fantus2, Adria Giacca9.   

Abstract

Fat-induced hepatic insulin resistance plays a key role in the pathogenesis of type 2 diabetes in obese individuals. Although PKC and inflammatory pathways have been implicated in fat-induced hepatic insulin resistance, the sequence of events leading to impaired insulin signaling is unknown. We used Wistar rats to investigate whether PKCδ and oxidative stress play causal roles in this process and whether this occurs via IKKβ- and JNK-dependent pathways. Rats received a 7-h infusion of Intralipid plus heparin (IH) to elevate circulating free fatty acids (FFA). During the last 2 h of the infusion, a hyperinsulinemic-euglycemic clamp with tracer was performed to assess hepatic and peripheral insulin sensitivity. An antioxidant, N-acetyl-L-cysteine (NAC), prevented IH-induced hepatic insulin resistance in parallel with prevention of decreased IκBα content, increased JNK phosphorylation (markers of IKKβ and JNK activation, respectively), increased serine phosphorylation of IRS-1 and IRS-2, and impaired insulin signaling in the liver without affecting IH-induced hepatic PKCδ activation. Furthermore, an antisense oligonucleotide against PKCδ prevented IH-induced phosphorylation of p47(phox) (marker of NADPH oxidase activation) and hepatic insulin resistance. Apocynin, an NADPH oxidase inhibitor, prevented IH-induced hepatic and peripheral insulin resistance similarly to NAC. These results demonstrate that PKCδ, NADPH oxidase, and oxidative stress play a causal role in FFA-induced hepatic insulin resistance in vivo and suggest that the pathway of FFA-induced hepatic insulin resistance is FFAPKCδ → NADPH oxidase and oxidative stress → IKKβ/JNKimpaired hepatic insulin signaling.
Copyright © 2014 the American Physiological Society.

Entities:  

Keywords:  antioxidant; antisense oligonucleotides; free fatty acids; hyperinsulinemic-euglycemic clamp; insulin resistance

Mesh:

Substances:

Year:  2014        PMID: 24824652      PMCID: PMC4080148          DOI: 10.1152/ajpendo.00436.2013

Source DB:  PubMed          Journal:  Am J Physiol Endocrinol Metab        ISSN: 0193-1849            Impact factor:   4.310


  58 in total

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2.  Mechanism by which fatty acids inhibit insulin activation of insulin receptor substrate-1 (IRS-1)-associated phosphatidylinositol 3-kinase activity in muscle.

Authors:  Chunli Yu; Yan Chen; Gary W Cline; Dongyan Zhang; Haihong Zong; Yanlin Wang; Raynald Bergeron; Jason K Kim; Samuel W Cushman; Gregory J Cooney; Bronwyn Atcheson; Morris F White; Edward W Kraegen; Gerald I Shulman
Journal:  J Biol Chem       Date:  2002-11-14       Impact factor: 5.157

3.  CEACAM1 regulates insulin clearance in liver.

Authors:  Matthew N Poy; Yan Yang; Khadijeh Rezaei; Mats A Fernström; Abraham D Lee; Yoshiaki Kido; Sandra K Erickson; Sonia M Najjar
Journal:  Nat Genet       Date:  2002-02-19       Impact factor: 38.330

4.  Disordered fat storage and mobilization in the pathogenesis of insulin resistance and type 2 diabetes.

Authors:  Gary F Lewis; André Carpentier; Khosrow Adeli; Adria Giacca
Journal:  Endocr Rev       Date:  2002-04       Impact factor: 19.871

5.  Hydrogen peroxide activates IkappaB kinases through phosphorylation of serine residues in the activation loops.

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Journal:  FEBS Lett       Date:  2002-05-22       Impact factor: 4.124

6.  Race differences in the association of oxidative stress with insulin sensitivity in African- and European-American women.

Authors:  Gordon Fisher; Jessica A Alvarez; Amy C Ellis; Wesley M Granger; Fernando Ovalle; Chiara Dalla Man; Claudio Cobelli; Barbara A Gower
Journal:  Obesity (Silver Spring)       Date:  2011-12-15       Impact factor: 5.002

7.  A central role for JNK in obesity and insulin resistance.

Authors:  Jiro Hirosumi; Gürol Tuncman; Lufen Chang; Cem Z Görgün; K Teoman Uysal; Kazuhisa Maeda; Michael Karin; Gökhan S Hotamisligil
Journal:  Nature       Date:  2002-11-21       Impact factor: 49.962

8.  Serine phosphorylation of insulin receptor substrate 1 by inhibitor kappa B kinase complex.

Authors:  Zhanguo Gao; Daniel Hwang; Fredly Bataille; Michael Lefevre; David York; Michael J Quon; Jianping Ye
Journal:  J Biol Chem       Date:  2002-09-25       Impact factor: 5.157

9.  Free fatty acid-induced hepatic insulin resistance: a potential role for protein kinase C-delta.

Authors:  Tony K T Lam; Hidenori Yoshii; C Andrew Haber; Elena Bogdanovic; Loretta Lam; I George Fantus; Adria Giacca
Journal:  Am J Physiol Endocrinol Metab       Date:  2002-10       Impact factor: 4.310

10.  N-acetylcysteine and taurine prevent hyperglycemia-induced insulin resistance in vivo: possible role of oxidative stress.

Authors:  C Andrew Haber; Tony K T Lam; Zhiwen Yu; Neehar Gupta; Tracy Goh; Elena Bogdanovic; Adria Giacca; I George Fantus
Journal:  Am J Physiol Endocrinol Metab       Date:  2003-06-10       Impact factor: 4.310

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  44 in total

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2.  Urotensin II-induced insulin resistance is mediated by NADPH oxidase-derived reactive oxygen species in HepG2 cells.

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Journal:  Physiology (Bethesda)       Date:  2019-05-01

4.  Liver-specific reconstitution of CEACAM1 reverses the metabolic abnormalities caused by its global deletion in male mice.

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Journal:  Diabetologia       Date:  2017-09-14       Impact factor: 10.122

Review 5.  Mineralocorticoid receptors in the pathogenesis of insulin resistance and related disorders: from basic studies to clinical disease.

Authors:  Guanghong Jia; Warren Lockette; James R Sowers
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2021-01-13       Impact factor: 3.619

6.  Role for hepatic CEACAM1 in regulating fatty acid metabolism along the adipocyte-hepatocyte axis.

Authors:  Lucia Russo; Hilda E Ghadieh; Simona S Ghanem; Qusai Y Al-Share; Zachary N Smiley; Cara Gatto-Weis; Emily L Esakov; Marcia F McInerney; Garrett Heinrich; Xin Tong; Lei Yin; Sonia M Najjar
Journal:  J Lipid Res       Date:  2016-10-24       Impact factor: 5.922

7.  (-)-Epicatechin improves insulin sensitivity in high fat diet-fed mice.

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Journal:  Arch Biochem Biophys       Date:  2016-03-08       Impact factor: 4.013

8.  Fenofibrate Decreases Insulin Clearance and Insulin Secretion to Maintain Insulin Sensitivity.

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Journal:  J Biol Chem       Date:  2016-09-23       Impact factor: 5.157

9.  Hepatocyte-specific deletion of BAP31 promotes SREBP1C activation, promotes hepatic lipid accumulation, and worsens IR in mice.

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Journal:  J Lipid Res       Date:  2017-11-07       Impact factor: 5.922

10.  Insulin Signaling in Bupivacaine-induced Cardiac Toxicity: Sensitization during Recovery and Potentiation by Lipid Emulsion.

Authors:  Michael R Fettiplace; Katarzyna Kowal; Richard Ripper; Alexandria Young; Kinga Lis; Israel Rubinstein; Marcelo Bonini; Richard Minshall; Guy Weinberg
Journal:  Anesthesiology       Date:  2016-02       Impact factor: 7.892

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