Literature DB >> 24425761

Effects of insulin resistance on skeletal muscle growth and exercise capacity in type 2 diabetic mouse models.

Joseph E Ostler1, Santosh K Maurya, Justin Dials, Steve R Roof, Steven T Devor, Mark T Ziolo, Muthu Periasamy.   

Abstract

Type 2 diabetes mellitus is associated with an accelerated muscle loss during aging, decreased muscle function, and increased disability. To better understand the mechanisms causing this muscle deterioration in type 2 diabetes, we assessed muscle weight, exercise capacity, and biochemistry in db/db and TallyHo mice at prediabetic and overtly diabetic ages. Maximum running speeds and muscle weights were already reduced in prediabetic db/db mice when compared with lean controls and more severely reduced in the overtly diabetic db/db mice. In contrast to db/db mice, TallyHo muscle size dramatically increased and maximum running speed was maintained during the progression from prediabetes to overt diabetes. Analysis of mechanisms that may contribute to decreased muscle weight in db/db mice demonstrated that insulin-dependent phosphorylation of enzymes that promote protein synthesis was severely blunted in db/db muscle. In addition, prediabetic (6-wk-old) and diabetic (12-wk-old) db/db muscle exhibited an increase in a marker of proteasomal protein degradation, the level of polyubiquitinated proteins. Chronic treadmill training of db/db mice improved glucose tolerance and exercise capacity, reduced markers of protein degradation, but only mildly increased muscle weight. The differences in muscle phenotype between these models of type 2 diabetes suggest that insulin resistance and chronic hyperglycemia alone are insufficient to rapidly decrease muscle size and function and that the effects of diabetes on muscle growth and function are animal model-dependent.

Entities:  

Keywords:  sarcopenia; ubiquitin

Mesh:

Substances:

Year:  2014        PMID: 24425761      PMCID: PMC3948983          DOI: 10.1152/ajpendo.00277.2013

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


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Authors:  Mariana Murea; Leon Lenchik; Thomas C Register; Gregory B Russell; Jianzhao Xu; S Carrie Smith; Donald W Bowden; Jasmin Divers; Barry I Freedman
Journal:  J Diabetes Complications       Date:  2018-03-19       Impact factor: 2.852

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Journal:  Diabetes Metab Res Rev       Date:  2018-12-20       Impact factor: 4.876

Review 4.  Muscle atrophy in patients with Type 2 Diabetes Mellitus: roles of inflammatory pathways, physical activity and exercise.

Authors:  Ben D Perry; Marissa K Caldow; Tara C Brennan-Speranza; Melissa Sbaraglia; George Jerums; Andrew Garnham; Chiew Wong; Pazit Levinger; Muhammad Asrar Ul Haq; David L Hare; S Russ Price; Itamar Levinger
Journal:  Exerc Immunol Rev       Date:  2016       Impact factor: 6.308

5.  Sarcolipin overexpression improves muscle energetics and reduces fatigue.

Authors:  Danesh H Sopariwala; Meghna Pant; Sana A Shaikh; Sanjeewa A Goonasekera; Jeffery D Molkentin; Noah Weisleder; Jianjie Ma; Zui Pan; Muthu Periasamy
Journal:  J Appl Physiol (1985)       Date:  2015-02-19

Review 6.  Effects of exercise on brain functions in diabetic animal models.

Authors:  Sun Shin Yi
Journal:  World J Diabetes       Date:  2015-05-15

7.  Liver alanine catabolism promotes skeletal muscle atrophy and hyperglycaemia in type 2 diabetes.

Authors:  Jürgen G Okun; Patricia M Rusu; Andrea Y Chan; Yuqin Wu; Yann W Yap; Thomas Sharkie; Jonas Schumacher; Kathrin V Schmidt; Katherine M Roberts-Thomson; Ryan D Russell; Annika Zota; Susanne Hille; Andreas Jungmann; Ludovico Maggi; Young Lee; Matthias Blüher; Stephan Herzig; Michelle A Keske; Mathias Heikenwalder; Oliver J Müller; Adam J Rose
Journal:  Nat Metab       Date:  2021-03-18

8.  Predicting myofiber cross-sectional area and triglyceride content with electrical impedance myography: A study in db/db mice.

Authors:  Sarbesh R Pandeya; Janice A Nagy; Daniela Riveros; Carson Semple; Rebecca S Taylor; Marie Mortreux; Benjamin Sanchez; Kush Kapur; Seward B Rutkove
Journal:  Muscle Nerve       Date:  2020-10-28       Impact factor: 3.217

9.  RNA sequencing reveals potential interacting networks between the altered transcriptome and ncRNome in the skeletal muscle of diabetic mice.

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Journal:  Biosci Rep       Date:  2021-07-30       Impact factor: 3.840

10.  Skeletal Lipocalin-2 Is Associated with Iron-Related Oxidative Stress in ob/ob Mice with Sarcopenia.

Authors:  Eun Bee Choi; Jae Hun Jeong; Hye Min Jang; Yu Jeong Ahn; Kyu Hyeon Kim; Hyeong Seok An; Jong Youl Lee; Eun Ae Jeong; Jaewoong Lee; Hyun Joo Shin; Kyung Eun Kim; Gu Seob Roh
Journal:  Antioxidants (Basel)       Date:  2021-05-11
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