Cargando…

Knockdown of EphB1 receptor decreases medulloblastoma cell growth and migration and increases cellular radiosensitization

The expression of members of the Eph family of receptor tyrosine kinases and their ephrin ligands is frequently dysregulated in medulloblastomas. We assessed the expression and functional role of EphB1 in medulloblastoma cell lines and engineered mouse models. mRNA and protein expression profiling s...

Descripción completa

Detalles Bibliográficos
Autores principales: Bhatia, Shilpa, Baig, Nimrah A., Timofeeva, Olga, Pasquale, Elena B., Hirsch, Kellen, MacDonald, Tobey J., Dritschilo, Anatoly, Lee, Yi Chien, Henkemeyer, Mark, Rood, Brian, Jung, Mira, Wang, Xiao-Jing, Kool, Marcel, Rodriguez, Olga, Albanese, Chris, Karam, Sana D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4496193/
https://www.ncbi.nlm.nih.gov/pubmed/25879388
_version_ 1782380365850083328
author Bhatia, Shilpa
Baig, Nimrah A.
Timofeeva, Olga
Pasquale, Elena B.
Hirsch, Kellen
MacDonald, Tobey J.
Dritschilo, Anatoly
Lee, Yi Chien
Henkemeyer, Mark
Rood, Brian
Jung, Mira
Wang, Xiao-Jing
Kool, Marcel
Rodriguez, Olga
Albanese, Chris
Karam, Sana D.
author_facet Bhatia, Shilpa
Baig, Nimrah A.
Timofeeva, Olga
Pasquale, Elena B.
Hirsch, Kellen
MacDonald, Tobey J.
Dritschilo, Anatoly
Lee, Yi Chien
Henkemeyer, Mark
Rood, Brian
Jung, Mira
Wang, Xiao-Jing
Kool, Marcel
Rodriguez, Olga
Albanese, Chris
Karam, Sana D.
author_sort Bhatia, Shilpa
collection PubMed
description The expression of members of the Eph family of receptor tyrosine kinases and their ephrin ligands is frequently dysregulated in medulloblastomas. We assessed the expression and functional role of EphB1 in medulloblastoma cell lines and engineered mouse models. mRNA and protein expression profiling showed expression of EphB1 receptor in the human medulloblastoma cell lines DAOY and UW228. EphB1 downregulation reduced cell growth and viability, decreased the expression of important cell cycle regulators, and increased the percentage of cells in G1 phase of the cell cycle. It also modulated the expression of proliferation, and cell survival markers. In addition, EphB1 knockdown in DAOY cells resulted in significant decrease in migration, which correlated with decreased β1-integrin expression and levels of phosphorylated Src. Furthermore, EphB1 knockdown enhanced cellular radiosensitization of medulloblastoma cells in culture and in a genetically engineered mouse medulloblastoma model. Using genetically engineered mouse models, we established that genetic loss of EphB1 resulted in a significant delay in tumor recurrence following irradiation compared to EphB1-expressing control tumors. Taken together, our findings establish that EphB1 plays a key role in medulloblastoma cell growth, viability, migration, and radiation sensitivity, making EphB1 a promising therapeutic target.
format Online
Article
Text
id pubmed-4496193
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-44961932015-07-10 Knockdown of EphB1 receptor decreases medulloblastoma cell growth and migration and increases cellular radiosensitization Bhatia, Shilpa Baig, Nimrah A. Timofeeva, Olga Pasquale, Elena B. Hirsch, Kellen MacDonald, Tobey J. Dritschilo, Anatoly Lee, Yi Chien Henkemeyer, Mark Rood, Brian Jung, Mira Wang, Xiao-Jing Kool, Marcel Rodriguez, Olga Albanese, Chris Karam, Sana D. Oncotarget Research Paper The expression of members of the Eph family of receptor tyrosine kinases and their ephrin ligands is frequently dysregulated in medulloblastomas. We assessed the expression and functional role of EphB1 in medulloblastoma cell lines and engineered mouse models. mRNA and protein expression profiling showed expression of EphB1 receptor in the human medulloblastoma cell lines DAOY and UW228. EphB1 downregulation reduced cell growth and viability, decreased the expression of important cell cycle regulators, and increased the percentage of cells in G1 phase of the cell cycle. It also modulated the expression of proliferation, and cell survival markers. In addition, EphB1 knockdown in DAOY cells resulted in significant decrease in migration, which correlated with decreased β1-integrin expression and levels of phosphorylated Src. Furthermore, EphB1 knockdown enhanced cellular radiosensitization of medulloblastoma cells in culture and in a genetically engineered mouse medulloblastoma model. Using genetically engineered mouse models, we established that genetic loss of EphB1 resulted in a significant delay in tumor recurrence following irradiation compared to EphB1-expressing control tumors. Taken together, our findings establish that EphB1 plays a key role in medulloblastoma cell growth, viability, migration, and radiation sensitivity, making EphB1 a promising therapeutic target. Impact Journals LLC 2015-03-30 /pmc/articles/PMC4496193/ /pubmed/25879388 Text en Copyright: © 2015 Bhatia 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
Bhatia, Shilpa
Baig, Nimrah A.
Timofeeva, Olga
Pasquale, Elena B.
Hirsch, Kellen
MacDonald, Tobey J.
Dritschilo, Anatoly
Lee, Yi Chien
Henkemeyer, Mark
Rood, Brian
Jung, Mira
Wang, Xiao-Jing
Kool, Marcel
Rodriguez, Olga
Albanese, Chris
Karam, Sana D.
Knockdown of EphB1 receptor decreases medulloblastoma cell growth and migration and increases cellular radiosensitization
title Knockdown of EphB1 receptor decreases medulloblastoma cell growth and migration and increases cellular radiosensitization
title_full Knockdown of EphB1 receptor decreases medulloblastoma cell growth and migration and increases cellular radiosensitization
title_fullStr Knockdown of EphB1 receptor decreases medulloblastoma cell growth and migration and increases cellular radiosensitization
title_full_unstemmed Knockdown of EphB1 receptor decreases medulloblastoma cell growth and migration and increases cellular radiosensitization
title_short Knockdown of EphB1 receptor decreases medulloblastoma cell growth and migration and increases cellular radiosensitization
title_sort knockdown of ephb1 receptor decreases medulloblastoma cell growth and migration and increases cellular radiosensitization
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4496193/
https://www.ncbi.nlm.nih.gov/pubmed/25879388
work_keys_str_mv AT bhatiashilpa knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT baignimraha knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT timofeevaolga knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT pasqualeelenab knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT hirschkellen knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT macdonaldtobeyj knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT dritschiloanatoly knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT leeyichien knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT henkemeyermark knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT roodbrian knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT jungmira knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT wangxiaojing knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT koolmarcel knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT rodriguezolga knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT albanesechris knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization
AT karamsanad knockdownofephb1receptordecreasesmedulloblastomacellgrowthandmigrationandincreasescellularradiosensitization