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Metabolism

Muscle-Specific Insulin Receptor Overexpression Protects Mice From Diet-Induced Glucose Intolerance but Leads to Postreceptor Insulin Resistance

  1. Guoxiao Wang1,
  2. Yingying Yu1,
  3. Weikang Cai1,2,
  4. Thiago M. Batista1,
  5. Sujin Suk3,
  6. Hye Lim Noh3,
  7. Michael Hirshman1,
  8. Pasquale Nigro1,
  9. Mengyao Ella Li1,
  10. Samir Softic1,4,
  11. Laurie Goodyear1,
  12. Jason K. Kim3 and
  13. C. Ronald Kahn1⇑
  1. 1Section on Integrative Physiology and Metabolism, Joslin Diabetes Center, Harvard Medical School, Boston, MA
  2. 2Department of Biomedical Sciences, New York Institute of Technology College of Osteopathic Medicine, Old Westbury, NY
  3. 3Program in Molecular Medicine and Division of Endocrinology, Metabolism, and Diabetes, Department of Medicine, University of Massachusetts Medical School, Worcester, MA
  4. 4Divisions of Pediatric Gastroenterology and Pharmacology and Nutritional Sciences, University of Kentucky College of Medicine, Lexington, KY
  1. Corresponding author: C. Ronald Kahn, c.ronald.kahn{at}joslin.harvard.edu
Diabetes 2020 Nov; 69(11): 2294-2309. https://doi.org/10.2337/db20-0439
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Abstract

Skeletal muscle insulin resistance is a prominent early feature in the pathogenesis of type 2 diabetes. In attempt to overcome this defect, we generated mice overexpressing insulin receptors (IR) specifically in skeletal muscle (IRMOE). On normal chow, IRMOE mice have body weight similar to that of controls but an increase in lean mass and glycolytic muscle fibers and reduced fat mass. IRMOE mice also show higher basal phosphorylation of IR, IRS-1, and Akt in muscle and improved glucose tolerance compared with controls. When challenged with high-fat diet (HFD), IRMOE mice are protected from diet-induced obesity. This is associated with reduced inflammation in fat and liver, improved glucose tolerance, and improved systemic insulin sensitivity. Surprisingly, however, in both chow and HFD-fed mice, insulin-stimulated Akt phosphorylation is significantly reduced in muscle of IRMOE mice, indicating postreceptor insulin resistance. RNA sequencing reveals downregulation of several postreceptor signaling proteins that contribute to this resistance. Thus, enhancing early insulin signaling in muscle by overexpression of the IR protects mice from diet-induced obesity and its effects on glucose metabolism. However, chronic overstimulation of this pathway leads to postreceptor desensitization, indicating the critical balance between normal signaling and hyperstimulation of the insulin signaling pathway.

Footnotes

  • This article contains supplementary material online at https://doi.org/10.2337/figshare.12860798.

  • Received April 28, 2020.
  • Accepted August 25, 2020.
  • © 2020 by the American Diabetes Association
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Diabetes: 69 (11)

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November 2020, 69(11)
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Muscle-Specific Insulin Receptor Overexpression Protects Mice From Diet-Induced Glucose Intolerance but Leads to Postreceptor Insulin Resistance
Guoxiao Wang, Yingying Yu, Weikang Cai, Thiago M. Batista, Sujin Suk, Hye Lim Noh, Michael Hirshman, Pasquale Nigro, Mengyao Ella Li, Samir Softic, Laurie Goodyear, Jason K. Kim, C. Ronald Kahn
Diabetes Nov 2020, 69 (11) 2294-2309; DOI: 10.2337/db20-0439

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Muscle-Specific Insulin Receptor Overexpression Protects Mice From Diet-Induced Glucose Intolerance but Leads to Postreceptor Insulin Resistance
Guoxiao Wang, Yingying Yu, Weikang Cai, Thiago M. Batista, Sujin Suk, Hye Lim Noh, Michael Hirshman, Pasquale Nigro, Mengyao Ella Li, Samir Softic, Laurie Goodyear, Jason K. Kim, C. Ronald Kahn
Diabetes Nov 2020, 69 (11) 2294-2309; DOI: 10.2337/db20-0439
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