bioRxiv · 10.1101/558775
Estrogen-related receptor beta activation and isoform shifting by cdc2-like kinase inhibition restricts migration and intracranial tumor growth in glioblastoma
Abstract
Glioblastoma (GBM; grade 4 glioma) is a highly aggressive and incurable tumor. GBM has recently been characterized as highly dependent on alternative splicing, a critical driver of tumor heterogeneity and plasticity. Estrogen-related receptor beta (ERR{beta}, ESRRB, NR3B2) is an orphan nuclear receptor expressed in the brain, where alternative splicing of the 3 end of the pre-mRNA leads to the production of three validated ERR{beta} protein products - ERR{beta} short form (ERR{beta}sf), ERR{beta}2, and ERR{beta} exon 10-deleted (ERR{beta}-{Delta}10). Our prior studies have shown the ERR{beta}2 isoform to play a role in G2/M cell cycle arrest and induction of apoptosis, in contrast to the function of the shorter ERR{beta}sf isoform in senescence and G1 cell cycle arrest. In this study, we sought to better define the role of the pro-apoptotic ERR{beta}2 isoform in GBM. We show that the ERR{beta}2 isoform is located in the nucleus, but also the cytoplasm. ERR{beta}2 suppresses GBM cell migration, interacts with the actin nucleation-promoting factor cortactin, and an ERR{beta} agonist is able to remodel the actin cytoskeleton and similarly suppress GBM cell migration. We further show that inhibition of the splicing regulatory cdc2-like kinases (CLKs) in combination with an ERR{beta} agonist shifts isoform expression in favor of ERR{beta}2 and potentiates inhibition of growth and migration in GBM cells and intracranial tumors. Financial SupportThis work was supported by R21 CA191444 (RBR), a Georgetown University Medical Center (GUMC) Dean for Researchs Toulmin Pilot Project Award (RBR), and a Partners in Research Breakthrough Award (RBR), as well as F99 CA234799 (DMT) and a student research grant from the Medical Center Graduate Student Organization (MCGSO, to DMT). Additional fellowship funding for DMT and MMH was provided by the Tumor Biology Training Grant (T32 CA009686, PI: Dr. Anna T. Riegel). Technical services were provided by the GUMC Animal Models, Flow Cytometry & Cell Sorting, Histopathology & Tissue, Microscopy & Imaging, and Tissue Culture Shared Resources, which are supported in part by Cancer Center Support Grant P30 CA051008 (PI: Dr. Louis M. Weiner). The Mayo Clinic Brain Tumor Patient-Derived Xenograft National Resource is supported in part by P50 CA108961 (JNS, PI: Dr. Patrick ONeill). The content of this article is the sole responsibility of the authors and does not represent the official views of the National Institutes of Health. Conflict of Interest and Author Contribution StatementThe authors declare no potential conflict of interest. DMT contributed to study design, performed experiments, analyzed data, and wrote the paper. SAK performed experiments, analyzed data, and wrote the paper. CJT performed experiments and analyzed data. MMH performed experiments. SDD performed experiments. JNS provided patient-derived xenograft samples. EG contributed to study design, and performed experiments. RBR contributed to study design, performed experiments, analyzed data, and wrote the paper. All authors reviewed, edited, and approved the manuscript.
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Tiek, D. M., Khatib, S. A., Trepicchio, C. J., Heckler, M. M., Divekar, S. D., Sarkaria, J. N., Glasgow, E., Riggins, R. B.. 2019-02-22. Estrogen-related receptor beta activation and isoform shifting by cdc2-like kinase inhibition restricts migration and intracranial tumor growth in glioblastoma. https://doi.org/10.1101/558775
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