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Published on: January 7, 2019
The IGF2BP1 oncogene is a druggable m6A-dependent enhancer of YAP1-driven gene expression in ovarian cancer
Annekatrin Schott1, Theresa Simon1, Simon Müller2
1Institute of Molecular Medicine, Section for Molecular Cell Biology, Faculty of Medicine, Martin Luther University Halle-Wittenberg, 06120 Halle, Germany.
Abstract:
The Hippo/YAP1 signaling pathway regulates normal development by controlling contact inhibition of growth. In cancer, YAP1 activation is often dysregulated, leading to excessive tumor growth and metastasis. SRC kinase can cross talk to Hippo signaling by disrupting adherens junctions, repressing the Hippo cascade, or activating YAP1 to promote proliferation. Here, we demonstrate that the IGF2 messenger RNA-binding protein 1 (IGF2BP1) impedes the repression of YAP1 by Hippo signaling in carcinomas. IGF2BP1 stabilizes the YAP1 messenger RNA (mRNA) and enhances YAP1 protein synthesis through an m6A-dependent interaction with the 3' untranslated region of the YAP1 mRNA, thereby increasing YAP1/TAZ-driven transcription to bypass contact inhibition of tumor cell growth. Inhibiting IGF2BP1-mRNA binding using BTYNB reduces YAP1 levels and transcriptional activity, leading to significant growth inhibition in carcinoma cells and ovarian cancer organoids. In contrast, SRC inhibition with Saracatinib fails to inhibit YAP1/TAZ-driven transcription and cell growth in general. This is particularly significant in de-differentiated, rather mesenchymal carcinoma-derived cells, which exhibit high IGF2BP1 and YAP1 expression, rendering them less reliant on SRC-directed growth stimulation. In such invasive carcinoma models, the combined inhibition of SRC, IGF2BP1, and YAP1/TAZ proved superior over monotherapies. These findings highlight the therapeutic potential of targeting IGF2BP1, a key regulator of oncogenic transcription networks.
Insights
IGF2BP1 protein stabilizes YAP1 mRNA, promoting tumor growth by bypassing growth inhibition. Inhibiting IGF2BP1 effectively reduces cancer cell proliferation, highlighting its therapeutic potential.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- The Hippo/YAP1 pathway controls normal growth via contact inhibition.
- Dysregulated YAP1 is implicated in cancer progression and metastasis.
- SRC kinase interacts with Hippo signaling, influencing YAP1 activity.
Purpose of the Study:
- Investigate the role of IGF2BP1 in YAP1 regulation within carcinomas.
- Determine the therapeutic potential of targeting IGF2BP1 in cancer treatment.
Main Methods:
- Studied IGF2BP1's interaction with YAP1 mRNA using biochemical assays.
- Utilized small molecule inhibitors (BTYNB, Saracatinib) to target IGF2BP1 and SRC.
- Assessed YAP1/TAZ transcriptional activity and cell proliferation in carcinoma cells and organoids.
Main Results:
- IGF2BP1 stabilizes YAP1 mRNA, enhancing protein synthesis and promoting tumor growth.
- Inhibiting IGF2BP1 with BTYNB reduced YAP1 levels and carcinoma cell proliferation.
- SRC inhibition was less effective, especially in aggressive carcinoma cells with high IGF2BP1/YAP1.
- Combined inhibition of SRC, IGF2BP1, and YAP1/TAZ showed superior efficacy.
Conclusions:
- IGF2BP1 is a key regulator of oncogenic transcription networks by stabilizing YAP1 mRNA.
- Targeting IGF2BP1 presents a promising therapeutic strategy for carcinomas.
- Combined therapies targeting SRC, IGF2BP1, and YAP1/TAZ may be effective for invasive cancers.
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