TY - JOUR
T1 - Regulation of Glioblastoma Tumor-Propagating Cells by the Integrin Partner Tetraspanin CD151
AU - Tilghman, Jessica
AU - Schiapparelli, Paula
AU - Lal, Bachuchu
AU - Ying, Mingyao
AU - Quinones-Hinojosa, Alfredo
AU - Xia, Shuli
AU - Laterra, John
N1 - Funding Information:
We thank Dr. Ichiro Nakano (Ohio State University) for his kind gift of M1123 and P146 GBM neurosphere lines. This work was partially funded by National Institutes of Health RO1NS076759 (J. L.) and RO1NS070024 (A. Q. H.), the National Science Foundation Graduate Research Fellowship Program (J. T.), and the Ford Foundation Predoctoral Fellowship Program (J. T.).
Publisher Copyright:
© 2016 The Authors.
PY - 2016
Y1 - 2016
N2 - Glioblastoma (GBM) stem cells (GSCs) represent tumor-propagating cells with stem-like characteristics (stemness) that contribute disproportionately to GBM drug resistance and tumor recurrence. Understanding the mechanisms supporting GSC stemness is important for developing therapeutic strategies for targeting GSC-dependent oncogenic mechanisms. Using GBM-derived neurospheres, we identified the cell surface tetraspanin family member CD151 as a novel regulator of glioma cell stemness, GSC self-renewal capacity, migration, and tumor growth. CD151 was found to be overexpressed in GBM tumors and GBM neurospheres enriched in GSCs. Silencing CD151 inhibited neurosphere forming capacity, neurosphere cell proliferation, and migration and attenuated the expression of markers and transcriptional drivers of the GSC phenotype. Conversely, forced CD151 expression promoted neurosphere self-renewal, cell migration, and expression of stemness-associated transcription factors. CD151 was found to complex with integrins α3, α6, and β1 in neurosphere cells, and blocking CD151 interactions with integrins α3 and α6 inhibited AKT phosphorylation, a downstream effector of integrin signaling, and impaired sphere formation and neurosphere cell migration. Additionally, targeting CD151 in vivo inhibited the growth of GBM neurosphere-derived xenografts. These findings identify CD151 and its interactions with integrins α3 and α6 as potential therapeutic targets for inhibiting stemness-driving mechanisms and stem cell populations in GBM.
AB - Glioblastoma (GBM) stem cells (GSCs) represent tumor-propagating cells with stem-like characteristics (stemness) that contribute disproportionately to GBM drug resistance and tumor recurrence. Understanding the mechanisms supporting GSC stemness is important for developing therapeutic strategies for targeting GSC-dependent oncogenic mechanisms. Using GBM-derived neurospheres, we identified the cell surface tetraspanin family member CD151 as a novel regulator of glioma cell stemness, GSC self-renewal capacity, migration, and tumor growth. CD151 was found to be overexpressed in GBM tumors and GBM neurospheres enriched in GSCs. Silencing CD151 inhibited neurosphere forming capacity, neurosphere cell proliferation, and migration and attenuated the expression of markers and transcriptional drivers of the GSC phenotype. Conversely, forced CD151 expression promoted neurosphere self-renewal, cell migration, and expression of stemness-associated transcription factors. CD151 was found to complex with integrins α3, α6, and β1 in neurosphere cells, and blocking CD151 interactions with integrins α3 and α6 inhibited AKT phosphorylation, a downstream effector of integrin signaling, and impaired sphere formation and neurosphere cell migration. Additionally, targeting CD151 in vivo inhibited the growth of GBM neurosphere-derived xenografts. These findings identify CD151 and its interactions with integrins α3 and α6 as potential therapeutic targets for inhibiting stemness-driving mechanisms and stem cell populations in GBM.
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U2 - 10.1016/j.neo.2016.02.003
DO - 10.1016/j.neo.2016.02.003
M3 - Article
C2 - 26992919
AN - SCOPUS:84963958993
SN - 1522-8002
VL - 18
SP - 185
EP - 198
JO - Neoplasia (United States)
JF - Neoplasia (United States)
IS - 3
ER -