Literature DB >> 32369414

Impacts of rat hindlimb Fndc5/irisin overexpression on muscle and adipose tissue metabolism.

W Farrash1,2, M Brook1, H Crossland1, B E Phillips1, J Cegielski1, D J Wilkinson1, D Constantin-Teodosiu3, P L Greenhaff3, K Smith1, M Cleasby4, P J Atherton1.   

Abstract

Myokines, such as irisin, have been purported to exert physiological effects on skeletal muscle in an autocrine/paracrine fashion. In this study, we aimed to investigate the mechanistic role of in vivo fibronectin type III domain-containing 5 (Fndc5)/irisin upregulation in muscle. Overexpression (OE) of Fndc5 in rat hindlimb muscle was achieved by in vivo electrotransfer, i.e., bilateral injections of Fndc5 harboring vectors for OE rats (n = 8) and empty vector for control rats (n = 8). Seven days later, a bolus of D2O (7.2 mL/kg) was administered via oral gavage to quantify muscle protein synthesis. After an overnight fast, on day 9, 2-deoxy-d-glucose-6-phosphate (2-DG6P; 6 mg/kg) was provided during an intraperitoneal glucose tolerance test (2 g/kg) to assess glucose handling. Animals were euthanized, musculus tibialis cranialis muscles and subcutaneous fat (inguinal) were harvested, and metabolic and molecular effects were evaluated. Muscle Fndc5 mRNA increased with OE (~2-fold; P = 0.014), leading to increased circulating irisin (1.5 ± 0.9 to 3.5 ± 1.2 ng/mL; P = 0.049). OE had no effect on protein anabolism or mitochondrial biogenesis; however, muscle glycogen was increased, along with glycogen synthase 1 gene expression (P = 0.04 and 0.02, respectively). In addition to an increase in glycogen synthase activation in OE (P = 0.03), there was a tendency toward increased glucose transporter 4 protein (P = 0.09). However, glucose uptake (accumulation of 2-DG6P) was identical. Irisin elicited no endocrine effect on mitochondrial biogenesis or uncoupling proteins in white adipose tissue. Hindlimb overexpression led to physiological increases in Fndc5/irisin. However, our data indicate limited short-term impacts of irisin in relation to muscle anabolism, mitochondrial biogenesis, glucose uptake, or adipose remodeling.

Entities:  

Keywords:  FNDC5; glucose metabolism; irisin; muscle; overexpression

Mesh:

Substances:

Year:  2020        PMID: 32369414      PMCID: PMC7311674          DOI: 10.1152/ajpendo.00034.2020

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


  51 in total

Review 1.  Warning: the use of heterogeneous mice may seriously damage your research.

Authors:  M F Festing
Journal:  Neurobiol Aging       Date:  1999 Mar-Apr       Impact factor: 4.673

2.  Muscles and their myokines.

Authors:  Bente Klarlund Pedersen
Journal:  J Exp Biol       Date:  2011-01-15       Impact factor: 3.312

3.  Detection and Quantitation of Circulating Human Irisin by Tandem Mass Spectrometry.

Authors:  Mark P Jedrychowski; Christiane D Wrann; Joao A Paulo; Kaitlyn K Gerber; John Szpyt; Matthew M Robinson; K Sreekumaran Nair; Steven P Gygi; Bruce M Spiegelman
Journal:  Cell Metab       Date:  2015-08-13       Impact factor: 27.287

4.  Role of skeletal muscle mitochondrial density on exercise-stimulated lipid oxidation.

Authors:  Jose E Galgani; Neil M Johannsen; Sudip Bajpeyi; Sheila R Costford; Zhengyu Zhang; Alok K Gupta; Eric Ravussin
Journal:  Obesity (Silver Spring)       Date:  2011-06-16       Impact factor: 5.002

5.  FNDC5 and irisin in humans: I. Predictors of circulating concentrations in serum and plasma and II. mRNA expression and circulating concentrations in response to weight loss and exercise.

Authors:  Joo Young Huh; Grigorios Panagiotou; Vassilis Mougios; Mary Brinkoetter; Maria T Vamvini; Benjamin E Schneider; Christos S Mantzoros
Journal:  Metabolism       Date:  2012-09-25       Impact factor: 8.694

6.  Lower circulating irisin is associated with type 2 diabetes mellitus.

Authors:  Jian-Jun Liu; Melvin D S Wong; Wan Ching Toy; Clara S H Tan; Sylvia Liu; Xiao Wei Ng; Subramaniam Tavintharan; Chee Fang Sum; Su Chi Lim
Journal:  J Diabetes Complications       Date:  2013-04-22       Impact factor: 2.852

7.  Adaptation of mitochondrial ATP production in human skeletal muscle to endurance training and detraining.

Authors:  R Wibom; E Hultman; M Johansson; K Matherei; D Constantin-Teodosiu; P G Schantz
Journal:  J Appl Physiol (1985)       Date:  1992-11

8.  High-intensity exercise causes greater irisin response compared with low-intensity exercise under similar energy consumption.

Authors:  Yoshifumi Tsuchiya; Daisuke Ando; Kazushige Goto; Masataka Kiuchi; Mitsuya Yamakita; Katsuhiro Koyama
Journal:  Tohoku J Exp Med       Date:  2014-06       Impact factor: 1.848

9.  Relative Contribution of Intramyocellular Lipid to Whole-Body Fat Oxidation Is Reduced With Age but Subsarcolemmal Lipid Accumulation and Insulin Resistance Are Only Associated With Overweight Individuals.

Authors:  Carolyn Chee; Chris E Shannon; Aisling Burns; Anna L Selby; Daniel Wilkinson; Kenneth Smith; Paul L Greenhaff; Francis B Stephens
Journal:  Diabetes       Date:  2016-01-06       Impact factor: 9.461

10.  PPARγ/Pgc-1α-Fndc5 pathway up-regulation in gastrocnemius and heart muscle of exercised, branched chain amino acid diet fed mice.

Authors:  Navid Abedpoor; Farzaneh Taghian; Kamran Ghaedi; Iman Niktab; Zahra Safaeinejad; Farzaneh Rabiee; Sommayeh Tanhaei; Mohammad Hossein Nasr-Esfahani
Journal:  Nutr Metab (Lond)       Date:  2018-08-29       Impact factor: 4.169

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  3 in total

1.  Irisin/FNDC5 influences myogenic markers on skeletal muscle following high and moderate-intensity exercise training in STZ-diabetic rats.

Authors:  Ehsan Arabzadeh; Hossein Shirvani; Masoumeh Ebadi Zahmatkesh; Shahin Riyahi Malayeri; Gholam Hossein Meftahi; Fatemeh Rostamkhani
Journal:  3 Biotech       Date:  2022-07-26       Impact factor: 2.893

Review 2.  Multiple Roles in Neuroprotection for the Exercise Derived Myokine Irisin.

Authors:  Mohammad Jodeiri Farshbaf; Karina Alviña
Journal:  Front Aging Neurosci       Date:  2021-04-16       Impact factor: 5.750

3.  The Physiological Role of Irisin in the Regulation of Muscle Glucose Homeostasis.

Authors:  Naohiro Yano; Yu Tina Zhao; Ting C Zhao
Journal:  Endocrines       Date:  2021-08-13
  3 in total

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