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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.
Abstract:
Lymphangioleiomyomatosis (LAM) is a rare, almost exclusively female lung disease linked to inactivating mutations in tuberous sclerosis complex 2 (TSC2), a tumor suppressor gene that controls cell metabolic state and growth via regulation of the mechanistic target of rapamycin (mTORC1) signaling. mTORC1 is frequently activated in human cancers and, although the mTORC1 inhibitor rapamycin has a cytostatic effect, it is, in general, unable to elicit a robust curative effect or tumor regression. Using RNA-Seq, we identified (1) Insulin-like Growth Factor (IGF2) as one of the genes with the highest fold-change difference between human TSC2-null and TSC2-expressing angiomyolipoma cells from a patient with LAM, and (2) the mouse IGF2 homolog Igf2, as a top-ranking gene according to fold change between Tsc2-/- and Tsc2+/+ mouse embryo fibroblasts (MEFs). We extended transcript-level findings to protein level, observing increased Igf2 protein expression and Igf2 secretion by Tsc2-/- MEFs. Increased Igf2 expression was not due to epigenetic imprinting, but was partially mediated through the Stat3 pathway and was completely insensitive to rapamycin treatment. An siRNA-mediated decrease of Igf2 resulted in decreased Stat3 phosphorylation, suggesting presence of an autocrine Igf2/Stat3 amplification cycle in Tsc2-/- MEFs. In human pulmonary LAM lesions and metastatic cell clusters, high levels of IGF2 were associated with mTORC1 activation. In addition, treatment of three primary IGF2-expressing LAM lung cell lines with rapamycin did not result in IGF2 level changes. Thus, targeting of IGF2 signaling may be of therapeutic value to LAM patients, particularly those who are unresponsive to rapamycin.
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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