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Differential connexin function enhances self-renewal in glioblastoma

Authors: Masahiro Hitomi, Loic P. Deleyrolle, Erin E. Mulkearns-Hubert, Awad Jarrar, Meizhang Li, Maksim Sinyuk, Balint Otvos, Sylvain Brunet, William A. Flavahan, Christopher G. Hubert, Winston Goan, James S. Hale, Alvaro G. Alvarado, Ao Zhang, Mark Rohaus, Muna Oli, Vinata Vedam-Mai, Jeff M. Fortin, Hunter S. Futch, Benjamin Griffith, Qiulian Wu, Chun-hong Xia, Xiaohua Gong, Manmeet S. Ahluwalia, Jeremy N. Rich, Brent A. Reynolds, & Justin D. Lathia

Summary:

The coordination of complex tumor processes requires cells to rapidly modify their phenotype and is achieved by direct cell-cell communication through gap junction channels composed of connexins. Previous reports have suggested that gap junctions are tumor suppressive based on connexin 43 (Cx43), but this does not take into account differences in connexin-mediated ion selectivity and intercellular communication rate that drive gap junction diversity. We find that glioblastoma cancer stem cells (CSCs) possess functional gap junctions that can be targeted using clinically relevant compounds to reduce self-renewal and tumor growth. Our analysis reveals that CSCs express Cx46, while Cx43 is predominantly expressed in non-CSCs. During differentiation, Cx46 is reduced, while Cx43 is increased, and targeting Cx46 compromises CSC maintenance. The difference between Cx46 and Cx43 is reflected in elevated cell-cell communication and reduced resting membrane potential in CSCs. Our data demonstrate a pro-tumorigenic role for gap junctions that is dependent on connexin expression.

Source: Cell Reports; Vol. 11, Issue 7, 1031-1042 (05/19/15)