Literature DB >> 17184170

Nitrosative stress and pathogenesis of insulin resistance.

Masao Kaneki1, Nobuyuki Shimizu, Daisuke Yamada, Kyungho Chang.   

Abstract

Insulin resistance is a major causative factor for type 2 diabetes and is associated with increased risk of cardiovascular disease. Despite intense investigation for a number of years, molecular mechanisms underlying insulin resistance remain to be determined. Recently, chronic inflammation has been highlighted as a culprit for obesity-induced insulin resistance. Nonetheless, upstream regulators and downstream effectors of chronic inflammation in insulin resistance remain unclarified. Inducible nitric oxide synthase (iNOS), a mediator of inflammation, has emerged as an important player in insulin resistance. Obesity is associated with increased iNOS expression in insulin-sensitive tissues in rodents and humans. Inhibition of iNOS ameliorates obesity-induced insulin resistance. However, molecular mechanisms by which iNOS mediates insulin resistance remain largely unknown. Protein S-nitrosylation, a covalent attachment of NO moiety to thiol sulfhydryls, has emerged as a major mediator of a broad array of NO actions. S-nitrosylation is elevated in patients with type 2 diabetes, and increased S-nitrosylation of insulin signaling molecules, including insulin receptor, insulin receptor substrate-1, and Akt/PKB, has been shown in skeletal muscle of obese, diabetic mice. Akt/PKB is reversibly inactivated by S-nitrosylation. Based on these findings, S-nitrosylation has recently been proposed to play an important role in the pathogenesis of insulin resistance.

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Year:  2007        PMID: 17184170     DOI: 10.1089/ars.2006.1464

Source DB:  PubMed          Journal:  Antioxid Redox Signal        ISSN: 1523-0864            Impact factor:   8.401


  65 in total

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Journal:  Antioxid Redox Signal       Date:  2014-05-13       Impact factor: 8.401

Review 3.  S-Nitrosothiol biology and therapeutic potential in metabolic disease.

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Review 4.  Redox-based regulation of signal transduction: principles, pitfalls, and promises.

Authors:  Yvonne M W Janssen-Heininger; Brooke T Mossman; Nicholas H Heintz; Henry J Forman; Balaraman Kalyanaraman; Toren Finkel; Jonathan S Stamler; Sue Goo Rhee; Albert van der Vliet
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6.  Interplay between the kinin B1 receptor and inducible nitric oxide synthase in insulin resistance.

Authors:  Youssef Haddad; Réjean Couture
Journal:  Br J Pharmacol       Date:  2016-05-06       Impact factor: 8.739

7.  Expanded granulocyte/monocyte compartment in myeloid-specific triple FoxO knockout increases oxidative stress and accelerates atherosclerosis in mice.

Authors:  Kyoichiro Tsuchiya; Marit Westerterp; Andrew J Murphy; Vidya Subramanian; Anthony W Ferrante; Alan R Tall; Domenico Accili
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8.  Molecular bases for the recognition of short peptide substrates and cysteine-directed modifications of human insulin-degrading enzyme.

Authors:  Enrico Malito; Luis A Ralat; Marika Manolopoulou; Julie L Tsay; Natasha L Wadlington; Wei-Jen Tang
Journal:  Biochemistry       Date:  2008-12-02       Impact factor: 3.162

9.  Protective effects of antioxidant-fortified diet on renal function and metabolic profile in obese Zucker rat.

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Journal:  Endocrine       Date:  2008-12-03       Impact factor: 3.633

10.  Inhibition of glutathione and thioredoxin metabolism enhances sensitivity to perifosine in head and neck cancer cells.

Authors:  Andrean L Simons; Arlene D Parsons; Katherine A Foster; Kevin P Orcutt; Melissa A Fath; Douglas R Spitz
Journal:  J Oncol       Date:  2009-09-02       Impact factor: 4.375

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