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Disruption of KIF3A in patient-derived glioblastoma cells: effects on ciliogenesis, hedgehog sensitivity, and tumorigenesis

KIF3A, a component of the kinesin-2 motor, is necessary for the progression of diverse tumor types. This is partly due to its role in regulating ciliogenesis and cell responsiveness to sonic hedgehog (SHH). Notably, primary cilia have been detected in human glioblastoma multiforme (GBM) tumor biopsi...

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Autores principales: Hoang-Minh, Lan B., Deleyrolle, Loic P., Siebzehnrubl, Dorit, Ugartemendia, George, Futch, Hunter, Griffith, Benjamin, Breunig, Joshua J., De Leon, Gabriel, Mitchell, Duane A., Semple-Rowland, Susan, Reynolds, Brent A., Sarkisian, Matthew R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4872766/
https://www.ncbi.nlm.nih.gov/pubmed/26760767
http://dx.doi.org/10.18632/oncotarget.6854
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author Hoang-Minh, Lan B.
Deleyrolle, Loic P.
Siebzehnrubl, Dorit
Ugartemendia, George
Futch, Hunter
Griffith, Benjamin
Breunig, Joshua J.
De Leon, Gabriel
Mitchell, Duane A.
Semple-Rowland, Susan
Reynolds, Brent A.
Sarkisian, Matthew R.
author_facet Hoang-Minh, Lan B.
Deleyrolle, Loic P.
Siebzehnrubl, Dorit
Ugartemendia, George
Futch, Hunter
Griffith, Benjamin
Breunig, Joshua J.
De Leon, Gabriel
Mitchell, Duane A.
Semple-Rowland, Susan
Reynolds, Brent A.
Sarkisian, Matthew R.
author_sort Hoang-Minh, Lan B.
collection PubMed
description KIF3A, a component of the kinesin-2 motor, is necessary for the progression of diverse tumor types. This is partly due to its role in regulating ciliogenesis and cell responsiveness to sonic hedgehog (SHH). Notably, primary cilia have been detected in human glioblastoma multiforme (GBM) tumor biopsies and derived cell lines. Here, we asked whether disrupting KIF3A in GBM cells affected ciliogenesis, in vitro growth and responsiveness to SHH, or tumorigenic behavior in vivo. We used a lentiviral vector to create three patient-derived GBM cell lines expressing a dominant negative, motorless form of Kif3a (dnKif3a). In all unmodified lines, we found that most GBM cells were capable of producing ciliated progeny and that dnKif3a expression in these cells ablated ciliogenesis. Interestingly, unmodified and dnKif3a-expressing cell lines displayed differential sensitivities and pathway activation to SHH and variable tumor-associated survival following mouse xenografts. In one cell line, SHH-induced cell proliferation was prevented in vitro by either expressing dnKif3a or inhibiting SMO signaling using cyclopamine, and the survival times of mice implanted with dnKif3a-expressing cells were increased. In a second line, expression of dnKif3a increased the cells' baseline proliferation while, surprisingly, sensitizing them to SHH-induced cell death. The survival times of mice implanted with these dnKif3a-expressing cells were decreased. Finally, expression of dnKif3a in a third cell line had no effect on cell proliferation, SHH sensitivity, or mouse survival times. These findings indicate that KIF3A is essential for GBM cell ciliogenesis, but its role in modulating GBM cell behavior is highly variable.
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spelling pubmed-48727662016-05-25 Disruption of KIF3A in patient-derived glioblastoma cells: effects on ciliogenesis, hedgehog sensitivity, and tumorigenesis Hoang-Minh, Lan B. Deleyrolle, Loic P. Siebzehnrubl, Dorit Ugartemendia, George Futch, Hunter Griffith, Benjamin Breunig, Joshua J. De Leon, Gabriel Mitchell, Duane A. Semple-Rowland, Susan Reynolds, Brent A. Sarkisian, Matthew R. Oncotarget Research Paper KIF3A, a component of the kinesin-2 motor, is necessary for the progression of diverse tumor types. This is partly due to its role in regulating ciliogenesis and cell responsiveness to sonic hedgehog (SHH). Notably, primary cilia have been detected in human glioblastoma multiforme (GBM) tumor biopsies and derived cell lines. Here, we asked whether disrupting KIF3A in GBM cells affected ciliogenesis, in vitro growth and responsiveness to SHH, or tumorigenic behavior in vivo. We used a lentiviral vector to create three patient-derived GBM cell lines expressing a dominant negative, motorless form of Kif3a (dnKif3a). In all unmodified lines, we found that most GBM cells were capable of producing ciliated progeny and that dnKif3a expression in these cells ablated ciliogenesis. Interestingly, unmodified and dnKif3a-expressing cell lines displayed differential sensitivities and pathway activation to SHH and variable tumor-associated survival following mouse xenografts. In one cell line, SHH-induced cell proliferation was prevented in vitro by either expressing dnKif3a or inhibiting SMO signaling using cyclopamine, and the survival times of mice implanted with dnKif3a-expressing cells were increased. In a second line, expression of dnKif3a increased the cells' baseline proliferation while, surprisingly, sensitizing them to SHH-induced cell death. The survival times of mice implanted with these dnKif3a-expressing cells were decreased. Finally, expression of dnKif3a in a third cell line had no effect on cell proliferation, SHH sensitivity, or mouse survival times. These findings indicate that KIF3A is essential for GBM cell ciliogenesis, but its role in modulating GBM cell behavior is highly variable. Impact Journals LLC 2016-01-09 /pmc/articles/PMC4872766/ /pubmed/26760767 http://dx.doi.org/10.18632/oncotarget.6854 Text en Copyright: © 2016 Hoang-Minh et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Hoang-Minh, Lan B.
Deleyrolle, Loic P.
Siebzehnrubl, Dorit
Ugartemendia, George
Futch, Hunter
Griffith, Benjamin
Breunig, Joshua J.
De Leon, Gabriel
Mitchell, Duane A.
Semple-Rowland, Susan
Reynolds, Brent A.
Sarkisian, Matthew R.
Disruption of KIF3A in patient-derived glioblastoma cells: effects on ciliogenesis, hedgehog sensitivity, and tumorigenesis
title Disruption of KIF3A in patient-derived glioblastoma cells: effects on ciliogenesis, hedgehog sensitivity, and tumorigenesis
title_full Disruption of KIF3A in patient-derived glioblastoma cells: effects on ciliogenesis, hedgehog sensitivity, and tumorigenesis
title_fullStr Disruption of KIF3A in patient-derived glioblastoma cells: effects on ciliogenesis, hedgehog sensitivity, and tumorigenesis
title_full_unstemmed Disruption of KIF3A in patient-derived glioblastoma cells: effects on ciliogenesis, hedgehog sensitivity, and tumorigenesis
title_short Disruption of KIF3A in patient-derived glioblastoma cells: effects on ciliogenesis, hedgehog sensitivity, and tumorigenesis
title_sort disruption of kif3a in patient-derived glioblastoma cells: effects on ciliogenesis, hedgehog sensitivity, and tumorigenesis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4872766/
https://www.ncbi.nlm.nih.gov/pubmed/26760767
http://dx.doi.org/10.18632/oncotarget.6854
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