Targeting the RhoGEF βPIX/COOL-1 in Glioblastoma: Proof of Concept Studies
Connor, Kate; Murray, David W; Jarzabek, Monika A; Tran, Nhan L; White, Kieron; Dicker, Patrick; Sweeney, Kieron J; O'Halloran, Philip J; MacCarthy, Brian; Shiels, Liam P; Lodi, Francesca; Lambrechts, Diether; Sarkaria, Jann N; Schiffelers, Raymond M; Symons, Marc; Byrne, Annette T
(2020) Cancers, volume 12, issue 12, pp. 1 - 19
(Article)
Abstract
Glioblastoma (GBM), a highly invasive and vascular malignancy is shown to rapidly develop resistance and evolve to a more invasive phenotype following bevacizumab (Bev) therapy. Rho Guanine Nucleotide Exchange Factor proteins (RhoGEFs) are mediators of key components in Bev resistance pathways, GBM and Bev-induced invasion. To identify GEFs with enhanced
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mRNA expression in the leading edge of GBM tumours, a cohort of GEFs was assessed using a clinical dataset. The GEF βPix/COOL-1 was identified, and the functional effect of gene depletion assessed using 3D-boyden chamber, proliferation, and colony formation assays in GBM cells. Anti-angiogenic effects were assessed in endothelial cells using tube formation and wound healing assays. In vivo effects of βPix/COOL-1-siRNA delivered via RGD-Nanoparticle in combination with Bev was studied in an invasive model of GBM. We found that siRNA-mediated knockdown of βPix/COOL-1 in vitro decreased cell invasion, proliferation and increased apoptosis in GBM cell lines. Moreover βPix/COOL-1 mediated endothelial cell migration in vitro. Mice treated with βPix/COOL-1 siRNA-loaded RGD-Nanoparticle and Bev demonstrated a trend towards improved median survival compared with Bev monotherapy. Our hypothesis generating study suggests that the RhoGEF βPix/COOL-1 may represent a target of vulnerability in GBM, in particular to improve Bev efficacy.
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Keywords: Anti-invasive therapy, ARHGEF7, Beta-Pix/COOL-1, Bevacizumab resistance, Glioblastoma, RhoGEF, Oncology, Cancer Research, Journal Article
ISSN: 2072-6694
Publisher: Multidisciplinary Digital Publishing Institute (MDPI)
Note: Funding Information: Funding: This research was funded by a Science Foundation Ireland Technology Innovation Award (15/TIDA/2963). A.T.B. is further supported by the “GLIOTRAIN” (http://www.gliotrain.eu) award, a Horizon 2020 Research and Innovation program funded under the Marie Skłodowska-Curie ETN initiative (Grant Agreement #766069). K.S. is supported by the Beaumont Hospital Cancer Research and Development Trust. Publisher Copyright: © 2020 by the authors. Licensee MDPI, Basel, Switzerland. Copyright: Copyright 2020 Elsevier B.V., All rights reserved.
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