Rapamycin-independent IGF2 expression in Tsc2-null mouse embryo fibroblasts and human lymphangioleiomyomatosis cells

Blanca E Himes1, Kseniya Obraztsova2, Lurong Lian2

  • 1Department of Biostatistics, Epidemiology and Informatics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, United States of America.

Plos One
|May 15, 2018
PubMed

Insights

Lymphangioleiomyomatosis (LAM) is a rare lung disease. Research shows Insulin-like Growth Factor 2 (IGF2) is elevated in LAM and may be a therapeutic target, especially for patients unresponsive to rapamycin.

Area of Science:

  • Cell Biology
  • Genetics
  • Oncology

Background:

  • Lymphangioleiomyomatosis (LAM) is a rare lung disease caused by TSC2 gene mutations, affecting mTORC1 signaling.
  • mTORC1 is often activated in cancers, and rapamycin offers limited therapeutic benefit in LAM.
  • Understanding alternative pathways is crucial for LAM treatment.

Purpose of the Study:

  • To identify novel therapeutic targets in LAM beyond mTORC1.
  • To investigate the role of Insulin-like Growth Factor 2 (IGF2) in TSC2-deficient cells and LAM pathogenesis.
  • To explore the relationship between IGF2, Stat3, and mTORC1 in LAM.

Main Methods:

  • RNA-sequencing (RNA-Seq) to compare gene expression in TSC2-null and TSC2-expressing cells.
  • Western blotting and ELISA to confirm protein expression and secretion.
  • siRNA to assess the functional role of IGF2.
  • Analysis of human LAM tissues and cell lines.

Main Results:

  • IGF2 was significantly upregulated in TSC2-null cells (human and mouse).
  • Increased IGF2 protein expression and secretion were observed in Tsc2-/- MEFs.
  • An autocrine IGF2/Stat3 amplification loop was identified, independent of rapamycin.
  • High IGF2 levels correlated with mTORC1 activation in human LAM lesions.
  • Rapamycin treatment did not alter IGF2 levels in LAM cell lines.

Conclusions:

  • IGF2 is a key mediator in TSC2-deficient cells and a potential therapeutic target in LAM.
  • Targeting IGF2 signaling may benefit LAM patients, particularly those resistant to rapamycin.
  • The IGF2/Stat3 axis represents a novel therapeutic avenue for LAM.

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