Literature DB >> 21926467

IRS2 increases mitochondrial dysfunction and oxidative stress in a mouse model of Huntington disease.

Marianna Sadagurski1, Zhiyong Cheng, Aldo Rozzo, Isabella Palazzolo, Gregory R Kelley, Xiaocheng Dong, Dimitri Krainc, Morris F White.   

Abstract

Aging is a major risk factor for the progression of neurodegenerative diseases, including Huntington disease (HD). Reduced neuronal IGF1 or Irs2 signaling have been shown to extend life span in mice. To determine whether Irs2 signaling modulates neurodegeneration in HD, we genetically modulated Irs2 concentrations in the R6/2 mouse model of HD. Increasing Irs2 levels in the brains of R6/2 mice significantly reduced life span and increased neuronal oxidative stress and mitochondrial dysfunction. In contrast, reducing Irs2 levels throughout the body (except in β cells, where Irs2 expression is needed to prevent diabetes onset; R6/2•Irs2+/-•Irs2βtg mice) improved motor performance and extended life span. The slower progression of HD-like symptoms was associated with increased nuclear localization of the transcription factor FoxO1 and increased expression of FoxO1-dependent genes that promote autophagy, mitochondrial function, and resistance to oxidative stress. Mitochondrial function improved and the number of autophagosomes increased in R6/2•Irs2+/-•Irs2βtg mice, whereas aggregate formation and oxidative stress decreased. Thus, our study suggests that Irs2 signaling can modulate HD progression. Since we found the expression of Irs2 to be normal in grade II HD patients, our results suggest that decreasing IRS2 signaling could be part of a therapeutic approach to slow the progression of HD.

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Year:  2011        PMID: 21926467      PMCID: PMC3195462          DOI: 10.1172/JCI46305

Source DB:  PubMed          Journal:  J Clin Invest        ISSN: 0021-9738            Impact factor:   14.808


  83 in total

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2.  Forkhead protein FoxO1 mediates Agrp-dependent effects of leptin on food intake.

Authors:  Tadahiro Kitamura; Yun Feng; Yukari Ido Kitamura; Streamson C Chua; Allison W Xu; Gregory S Barsh; Luciano Rossetti; Domenico Accili
Journal:  Nat Med       Date:  2006-04-09       Impact factor: 53.440

3.  Reduction in mitochondrial superoxide dismutase modulates Alzheimer's disease-like pathology and accelerates the onset of behavioral changes in human amyloid precursor protein transgenic mice.

Authors:  Luke Esposito; Jacob Raber; Lisa Kekonius; Fengrong Yan; Giu-Qiu Yu; Nga Bien-Ly; Jukka Puoliväli; Kimberly Scearce-Levie; Eliezer Masliah; Lennart Mucke
Journal:  J Neurosci       Date:  2006-05-10       Impact factor: 6.167

4.  Transcriptional repression of PGC-1alpha by mutant huntingtin leads to mitochondrial dysfunction and neurodegeneration.

Authors:  Libin Cui; Hyunkyung Jeong; Fran Borovecki; Christopher N Parkhurst; Naoko Tanese; Dimitri Krainc
Journal:  Cell       Date:  2006-10-06       Impact factor: 41.582

5.  Suppression of reactive oxygen species and neurodegeneration by the PGC-1 transcriptional coactivators.

Authors:  Julie St-Pierre; Stavit Drori; Marc Uldry; Jessica M Silvaggi; James Rhee; Sibylle Jäger; Christoph Handschin; Kangni Zheng; Jiandie Lin; Wenli Yang; David K Simon; Robert Bachoo; Bruce M Spiegelman
Journal:  Cell       Date:  2006-10-20       Impact factor: 41.582

6.  Thermoregulatory and metabolic defects in Huntington's disease transgenic mice implicate PGC-1alpha in Huntington's disease neurodegeneration.

Authors:  Patrick Weydt; Victor V Pineda; Anne E Torrence; Randell T Libby; Terrence F Satterfield; Eduardo R Lazarowski; Merle L Gilbert; Gregory J Morton; Theodor K Bammler; Andrew D Strand; Libin Cui; Richard P Beyer; Courtney N Easley; Annette C Smith; Dimitri Krainc; Serge Luquet; Ian R Sweet; Michael W Schwartz; Albert R La Spada
Journal:  Cell Metab       Date:  2006-10-19       Impact factor: 27.287

Review 7.  Oxidative damage in Huntington's disease pathogenesis.

Authors:  Susan E Browne; M Flint Beal
Journal:  Antioxid Redox Signal       Date:  2006 Nov-Dec       Impact factor: 8.401

8.  Involvement of mitochondrial complex II defects in neuronal death produced by N-terminus fragment of mutated huntingtin.

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Authors:  Joseph A Baur; Kevin J Pearson; Nathan L Price; Hamish A Jamieson; Carles Lerin; Avash Kalra; Vinayakumar V Prabhu; Joanne S Allard; Guillermo Lopez-Lluch; Kaitlyn Lewis; Paul J Pistell; Suresh Poosala; Kevin G Becker; Olivier Boss; Dana Gwinn; Mingyi Wang; Sharan Ramaswamy; Kenneth W Fishbein; Richard G Spencer; Edward G Lakatta; David Le Couteur; Reuben J Shaw; Placido Navas; Pere Puigserver; Donald K Ingram; Rafael de Cabo; David A Sinclair
Journal:  Nature       Date:  2006-11-01       Impact factor: 49.962

10.  Adult-onset calorie restriction delays the accumulation of mitochondrial enzyme abnormalities in aging rat kidney tubular epithelial cells.

Authors:  Susan H McKiernan; Victoria C Tuen; Katherine Baldwin; Jonathan Wanagat; Arjang Djamali; Judd M Aiken
Journal:  Am J Physiol Renal Physiol       Date:  2007-03-06
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  59 in total

Review 1.  Mini-review: Retarding aging in murine genetic models of neurodegeneration.

Authors:  Roger L Albin; Richard A Miller
Journal:  Neurobiol Dis       Date:  2015-10-21       Impact factor: 5.996

2.  Mitochondrial quality-control dysregulation in conditional HO-1-/- mice.

Authors:  Hagir B Suliman; Jeffrey E Keenan; Claude A Piantadosi
Journal:  JCI Insight       Date:  2017-02-09

3.  Insulin receptor substrate signaling suppresses neonatal autophagy in the heart.

Authors:  Christian Riehle; Adam R Wende; Sandra Sena; Karla Maria Pires; Renata Oliveira Pereira; Yi Zhu; Heiko Bugger; Deborah Frank; Jack Bevins; Dong Chen; Cynthia N Perry; Xiaocheng C Dong; Steven Valdez; Monika Rech; Xiaoming Sheng; Bart C Weimer; Roberta A Gottlieb; Morris F White; E Dale Abel
Journal:  J Clin Invest       Date:  2013-11-01       Impact factor: 14.808

Review 4.  Shaping the role of mitochondria in the pathogenesis of Huntington's disease.

Authors:  Veronica Costa; Luca Scorrano
Journal:  EMBO J       Date:  2012-03-23       Impact factor: 11.598

Review 5.  The many faces of autophagy dysfunction in Huntington's disease: from mechanism to therapy.

Authors:  Constanza J Cortes; Albert R La Spada
Journal:  Drug Discov Today       Date:  2014-03-13       Impact factor: 7.851

6.  Disruption of insulin receptor substrate-2 impairs growth but not insulin function in rats.

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Journal:  J Biol Chem       Date:  2020-07-06       Impact factor: 5.157

7.  Activation of IGF-1 and insulin signaling pathways ameliorate mitochondrial function and energy metabolism in Huntington's Disease human lymphoblasts.

Authors:  Luana Naia; I Luísa Ferreira; Teresa Cunha-Oliveira; Ana I Duarte; Márcio Ribeiro; Tatiana R Rosenstock; Mário N Laço; Maria J Ribeiro; Catarina R Oliveira; Frédéric Saudou; Sandrine Humbert; A Cristina Rego
Journal:  Mol Neurobiol       Date:  2014-05-20       Impact factor: 5.590

Review 8.  Neuroinflammatory and autonomic mechanisms in diabetes and hypertension.

Authors:  Cheng Han; Matthew W Rice; Dongsheng Cai
Journal:  Am J Physiol Endocrinol Metab       Date:  2016-05-10       Impact factor: 4.310

9.  A symptomatic Fabry disease mouse model generated by inducing globotriaosylceramide synthesis.

Authors:  Atsumi Taguchi; Hiroki Maruyama; Masaaki Nameta; Tadashi Yamamoto; Junichiro Matsuda; Ashok B Kulkarni; Hidekatsu Yoshioka; Satoshi Ishii
Journal:  Biochem J       Date:  2013-12-15       Impact factor: 3.857

Review 10.  Ferroptosis: Death by Lipid Peroxidation.

Authors:  Wan Seok Yang; Brent R Stockwell
Journal:  Trends Cell Biol       Date:  2015-12-02       Impact factor: 20.808

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