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

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...

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Veröffentlicht in:American journal of physiology: endocrinology and metabolism 2020-06, Vol.318 (6), p.E943-E955
Hauptverfasser: Farrash, W, Brook, M, Crossland, H, Phillips, B E, Cegielski, J, Wilkinson, D J, Constantin-Teodosiu, D, Greenhaff, P L, Smith, K, Cleasby, M, Atherton, P J
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Sprache:eng
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Zusammenfassung: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 (  = 8) and empty vector for control rats (  = 8). Seven days later, a bolus of D O (7.2 mL/kg) was administered via oral gavage to quantify muscle protein synthesis. After an overnight fast, on , 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;  = 0.014), leading to increased circulating irisin (1.5 ± 0.9 to 3.5 ± 1.2 ng/mL;  = 0.049). OE had no effect on protein anabolism or mitochondrial biogenesis; however, muscle glycogen was increased, along with glycogen synthase 1 gene expression (  = 0.04 and 0.02, respectively). In addition to an increase in glycogen synthase activation in OE (  = 0.03), there was a tendency toward increased glucose transporter 4 protein (  = 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.
ISSN:0193-1849
1522-1555
DOI:10.1152/ajpendo.00034.2020