TOP

Communication

Split Viewer

Mol. Cells 2009; 28(5): 495-499

Published online October 21, 2009

https://doi.org/10.1007/s10059-009-0142-8

© The Korean Society for Molecular and Cellular Biology

Insulin-Like Growth Factor-I-Induced Androgen
Receptor Activation Is Mediated by the PI3K/Akt
Pathway in C2C12 Skeletal Muscle Cells

Won Jun Lee

Received: August 12, 2009; Revised: September 4, 2009; Accepted: September 7, 2009

Abstract

Although insulin-like growth factor-I (IGF-I) and androgen receptor (AR) are well known effectors of skeletal muscle, the molecular mechanism by which signaling pathways integrating AR and IGF-I in skeletal muscle cells has not been previously examined. In this study, the role of PI3K/Akt on IGF-I-induced gene expression and activation of AR in skeletal muscle cells was investigated. C2C12 cells were treated with IGF-I in the absence or presence of inhibitors of PI3K/Akt pathway (LY294002 and Wortmannin). Inhibition of the PI3K/Akt pathway with LY294002 or Wortmannin led to a significant decrease in IGF-I-induced AR phosphorylation and total AR protein expression. Fur-thermore, IGF-I-induced AR mRNA and skeletal α-actin mRNA were blocked by LY294002 or Wortmannin. Confocal images showed that IGF-I-induced AR translocation from cytosol to nucleus was inhibited significantly in response to treatment with LY294002 or Wortmannin. The present results suggest that modulating effect of IGF-I on AR gene expression and activation in C2C12 mouse skeletal muscle cells is mediated at least in part by the PI3K/Akt pathway.

Keywords androgen receptor, C2C12, insulin-like growth factor-I, ligand-independent mechanism, phosphatidylinositol 3-kinase

Article

Communication

Mol. Cells 2009; 28(5): 495-499

Published online November 30, 2009 https://doi.org/10.1007/s10059-009-0142-8

Copyright © The Korean Society for Molecular and Cellular Biology.

Insulin-Like Growth Factor-I-Induced Androgen
Receptor Activation Is Mediated by the PI3K/Akt
Pathway in C2C12 Skeletal Muscle Cells

Won Jun Lee

Received: August 12, 2009; Revised: September 4, 2009; Accepted: September 7, 2009

Abstract

Although insulin-like growth factor-I (IGF-I) and androgen receptor (AR) are well known effectors of skeletal muscle, the molecular mechanism by which signaling pathways integrating AR and IGF-I in skeletal muscle cells has not been previously examined. In this study, the role of PI3K/Akt on IGF-I-induced gene expression and activation of AR in skeletal muscle cells was investigated. C2C12 cells were treated with IGF-I in the absence or presence of inhibitors of PI3K/Akt pathway (LY294002 and Wortmannin). Inhibition of the PI3K/Akt pathway with LY294002 or Wortmannin led to a significant decrease in IGF-I-induced AR phosphorylation and total AR protein expression. Fur-thermore, IGF-I-induced AR mRNA and skeletal α-actin mRNA were blocked by LY294002 or Wortmannin. Confocal images showed that IGF-I-induced AR translocation from cytosol to nucleus was inhibited significantly in response to treatment with LY294002 or Wortmannin. The present results suggest that modulating effect of IGF-I on AR gene expression and activation in C2C12 mouse skeletal muscle cells is mediated at least in part by the PI3K/Akt pathway.

Keywords: androgen receptor, C2C12, insulin-like growth factor-I, ligand-independent mechanism, phosphatidylinositol 3-kinase

Mol. Cells
Dec 31, 2023 Vol.46 No.12, pp. 727~777
COVER PICTURE
Lee et al. (pp. 757-763), show that disruption of ANKS1A promotes the entry of intraflagellar transport trains into cilia, increasing protein transport and forming extracellular vesicles (ECVs). This figure illustrates the abundance of ECVs along the cilia of primary ependymal cells derived from ANKS1A KO mice.

Share this article on

  • line

Related articles in Mol. Cells

Molecules and Cells

eISSN 0219-1032
qr-code Download