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SNHG7 is a lncRNA oncogene controlled by Insulin-like Growth Factor signaling through a negative feedback loop to
David N Boone1,2,3,4, Andrew Warburton5,6, Sreeroopa Som5,7
1Women's Cancer Research Center, University of Pittsburgh, Pittsburgh, USA. dnb14@pitt.edu.
Abstract:
Evidence suggests Insulin-like growth factor 1 (IGF1) signaling is involved in the initiation and progression of a subset of breast cancers by inducing cell proliferation and survival. Although the signaling cascade following IGF1 receptor activation is well-studied, the key elements of the transcriptional response governing IGF1's actions are not well understood. Recent studies reveal that the majority of the genome is transcribed and that there are more long non-coding RNAs (lncRNAs) than protein coding genes, several of which are dysregulated in human cancer. However, studies on the regulation and mechanism of action of these lncRNAs are in their infancy. Here we show that IGF1 alters the expression levels of a subset of lncRNAs. SNHG7, a member of the small nucleolar host gene family, is a highly-expressed lncRNA that is consistently and significantly down-regulated by IGF1 signaling by a post-transcriptional mechanism through the MAPK pathway. SNHG7 regulates proliferation of breast cancer cell lines in a dose-dependent manner, and silencing SNHG7 expression causes cell cycle arrest in G0/G1. Intriguingly, SNHG7 alters the expression of many IGF1 signaling intermediates and IGF1-regulated genes suggesting a feedback mechanism to tightly regulate the IGF1 response. Finally, we show in clinical data that SNHG7 is overexpressed in tumors of a subset of breast cancer patients and that these patients have lower disease-free survival than patients without elevated SNHG7 expression. We propose that SNHG7 is a lncRNA oncogene that is controlled by growth factor signaling in a feedback mechanism to prevent hyperproliferation, and that this regulation can be lost in the development or progression of breast cancer.
Insights
Insulin-like growth factor 1 (IGF1) signaling impacts breast cancer. A long non-coding RNA, SNHG7, is downregulated by IGF1, affecting cell proliferation and survival, and its dysregulation is linked to poorer patient outcomes.
Area of Science:
- Molecular Biology
- Cancer Research
- Genomics
Background:
- Insulin-like growth factor 1 (IGF1) signaling drives proliferation and survival in some breast cancers.
- The transcriptional mechanisms underlying IGF1's role in breast cancer remain incompletely understood.
- Long non-coding RNAs (lncRNAs) are increasingly recognized for their roles in cancer, but their regulatory functions are largely unexplored.
Purpose of the Study:
- To investigate the role of lncRNAs in IGF1-mediated breast cancer progression.
- To identify specific lncRNAs regulated by IGF1 signaling.
- To elucidate the function and clinical relevance of SNHG7 in breast cancer.
Main Methods:
- Analysis of lncRNA expression changes induced by IGF1 signaling.
- Investigating the post-transcriptional regulation of SNHG7 via the MAPK pathway.
- Functional studies on SNHG7's impact on breast cancer cell proliferation and cell cycle.
- Correlation analysis of SNHG7 expression with clinical breast cancer patient data.
Main Results:
- IGF1 signaling down-regulates the lncRNA SNHG7 through a post-transcriptional mechanism involving the MAPK pathway.
- SNHG7 expression levels directly correlate with breast cancer cell proliferation and cell cycle progression.
- SNHG7 influences IGF1 signaling intermediates and IGF1-regulated genes, suggesting a feedback loop.
- Elevated SNHG7 expression in patient tumors is associated with reduced disease-free survival.
Conclusions:
- SNHG7 acts as a lncRNA oncogene in breast cancer, regulated by growth factor signaling.
- This feedback mechanism normally prevents hyperproliferation but can be disrupted in breast cancer development.
- SNHG7 dysregulation represents a potential therapeutic target and prognostic biomarker in breast cancer.
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