Exercise does not alter subcellular localization, but increases phosphorylation of insulin-signaling proteins in human skeletal muscle


Autoria(s): Wilson, Chris; Hargreaves, Mark; Howlett, Kirsten
Data(s)

01/01/2006

Resumo

The subcellular localization of insulin signaling proteins is altered by various stimuli such as insulin, insulin-like growth factor I, and oxidative stress and is thought to be an important mechanism that can influence intracellular signal transduction and cellular function. This study examined the possibility that exercise may also alter the subcellular localization of insulin signaling proteins in human skeletal muscle. Nine untrained males performed 60 min of cycling exercise (~67% peak pulmonary O<sub>2</sub> uptake). Muscle biopsies were sampled at rest, immediately after exercise, and 3 h postexercise. Muscle was fractionated by centrifugation into the following crude fractions: cytosolic, nuclear, and a high-speed pellet containing membrane and cytoskeletal components. Fractions were analyzed for protein content of insulin receptor, insulin receptor substrate (IRS)-1 and -2, p85 subunit of phosphatidylinositol 3-kinase, Akt, and glycogen synthase kinase-3 (GSK-3). There was no significant change in the protein content of the insulin signaling proteins in any of the crude fractions after exercise or 3 h postexercise. Exercise had no significant effect on the phosphorylation of IRS-1 Tyr612 in any of the fractions. In contrast, exercise increased (<i>P </i>< 0.05) the phosphorylation of Akt Ser<sup>473</sup> and GSK-3α/ß Ser<sup>9/2</sup><sup>1</sup> in the cytosolic fraction only. In conclusion, exercise can increase phosphorylation of downstream insulin signaling proteins specifically in the cytosolic fraction but does not result in changes in the subcellular localization of insulin signaling proteins in human skeletal muscle. Change in the subcellular protein localization is therefore an unlikely mechanism to influence signal transduction pathways and cellular function in skeletal muscle after exercise. <br />

Identificador

http://hdl.handle.net/10536/DRO/DU:30003572

Idioma(s)

eng

Publicador

American Physiological Society

Relação

http://dro.deakin.edu.au/eserv/DU:30003572/n20060301.pdf

http://dx.doi.org/10.1152/ajpendo.00314.2005

Direitos

2006, American Physiological Society

Palavras-Chave #insulin receptor substrate #intracellular signaling pathway
Tipo

Journal Article