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bioRxiv · 10.1101/2020.06.19.159905

IGF2BP1 is a targetable SRC/MAPK-dependent driver of invasive growth in ovarian cancer

Abstract

Epithelial-to-mesenchymal transition (EMT) is a hallmark of aggressive, mesenchymal-like high-grade serous ovarian carcinoma (HG-SOC). The SRC kinase is a key driver of cancer-associated EMT promoting adherens junction (AJ) disassembly by phosphorylation-driven internalization and degradation of AJ proteins. Here we show, that the IGF2 mRNA binding protein 1 (IGF2BP1) is up-regulated in mesenchymal-like HG-SOC and promotes SRC activation by a previously unknown protein-ligand-induced, but RNA-independent mechanism. IGF2BP1-driven invasive growth of ovarian cancer cells essentially relies on the SRC-dependent disassembly of AJs. Concomitantly, IGF2BP1 enhances ERK2 expression in a RNA-binding dependent manner. Together this reveals a post-transcriptional mechanism of interconnected stimulation of SRC/ERK signaling in ovarian cancer cells. The IGF2BP1-SRC/ERK2 axis is targetable by the SRC-inhibitor saracatinib and MEK-inhibitor selumetinib. However, due to IGF2BP1-directed stimulation only combinatorial treatment effectively overcomes the IGF2BP1-promoted invasive growth in 3D culture conditions as well as intraperitoneal mouse models. In conclusion, we reveal an unexpected role of IGF2BP1 in enhancing SRC/MAPK-driven invasive growth of ovarian cancer cells. This provides a rational for the therapeutic benefit of combinatorial SRC/MEK inhibition in mesenchymal-like HG-SOC. Graphical Abstract O_FIG_DISPLAY_L [Figure 1] M_FIG_DISPLAY C_FIG_DISPLAY

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BibTeXRIS

Bley, N., Schott, A., Mueller, S., Misiak, D., Lederer, M., Fuchs, T., Assmann, C., Glass, M., Ihling, C., Sinz, A., Pazaitis, N., Wickenhauser, C., Vetter, M., Ungurs, O., Strauss, H.-G., Thomssen, C., Huettelmaier, S.. 2020-06-20. IGF2BP1 is a targetable SRC/MAPK-dependent driver of invasive growth in ovarian cancer. https://doi.org/10.1101/2020.06.19.159905

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