Cargando…

Hox-C9 activates the intrinsic pathway of apoptosis and is associated with spontaneous regression in neuroblastoma

Neuroblastoma is an embryonal malignancy of the sympathetic nervous system. Spontaneous regression and differentiation of neuroblastoma is observed in a subset of patients, and has been suggested to represent delayed activation of physiologic molecular programs of fetal neuroblasts. Homeobox genes c...

Descripción completa

Detalles Bibliográficos
Autores principales: Kocak, H, Ackermann, S, Hero, B, Kahlert, Y, Oberthuer, A, Juraeva, D, Roels, F, Theissen, J, Westermann, F, Deubzer, H, Ehemann, V, Brors, B, Odenthal, M, Berthold, F, Fischer, M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3668636/
https://www.ncbi.nlm.nih.gov/pubmed/23579273
http://dx.doi.org/10.1038/cddis.2013.84
_version_ 1782271648777371648
author Kocak, H
Ackermann, S
Hero, B
Kahlert, Y
Oberthuer, A
Juraeva, D
Roels, F
Theissen, J
Westermann, F
Deubzer, H
Ehemann, V
Brors, B
Odenthal, M
Berthold, F
Fischer, M
author_facet Kocak, H
Ackermann, S
Hero, B
Kahlert, Y
Oberthuer, A
Juraeva, D
Roels, F
Theissen, J
Westermann, F
Deubzer, H
Ehemann, V
Brors, B
Odenthal, M
Berthold, F
Fischer, M
author_sort Kocak, H
collection PubMed
description Neuroblastoma is an embryonal malignancy of the sympathetic nervous system. Spontaneous regression and differentiation of neuroblastoma is observed in a subset of patients, and has been suggested to represent delayed activation of physiologic molecular programs of fetal neuroblasts. Homeobox genes constitute an important family of transcription factors, which play a fundamental role in morphogenesis and cell differentiation during embryogenesis. In this study, we demonstrate that expression of the majority of the human HOX class I homeobox genes is significantly associated with clinical covariates in neuroblastoma using microarray expression data of 649 primary tumors. Moreover, a HOX gene expression-based classifier predicted neuroblastoma patient outcome independently of age, stage and MYCN amplification status. Among all HOX genes, HOXC9 expression was most prominently associated with favorable prognostic markers. Most notably, elevated HOXC9 expression was significantly associated with spontaneous regression in infant neuroblastoma. Re-expression of HOXC9 in three neuroblastoma cell lines led to a significant reduction in cell viability, and abrogated tumor growth almost completely in neuroblastoma xenografts. Neuroblastoma growth arrest was related to the induction of programmed cell death, as indicated by an increase in the sub-G1 fraction and translocation of phosphatidylserine to the outer membrane. Programmed cell death was associated with the release of cytochrome c from the mitochondria into the cytosol and activation of the intrinsic cascade of caspases, indicating that HOXC9 re-expression triggers the intrinsic apoptotic pathway. Collectively, our results show a strong prognostic impact of HOX gene expression in neuroblastoma, and may point towards a role of Hox-C9 in neuroblastoma spontaneous regression.
format Online
Article
Text
id pubmed-3668636
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-36686362013-05-31 Hox-C9 activates the intrinsic pathway of apoptosis and is associated with spontaneous regression in neuroblastoma Kocak, H Ackermann, S Hero, B Kahlert, Y Oberthuer, A Juraeva, D Roels, F Theissen, J Westermann, F Deubzer, H Ehemann, V Brors, B Odenthal, M Berthold, F Fischer, M Cell Death Dis Original Article Neuroblastoma is an embryonal malignancy of the sympathetic nervous system. Spontaneous regression and differentiation of neuroblastoma is observed in a subset of patients, and has been suggested to represent delayed activation of physiologic molecular programs of fetal neuroblasts. Homeobox genes constitute an important family of transcription factors, which play a fundamental role in morphogenesis and cell differentiation during embryogenesis. In this study, we demonstrate that expression of the majority of the human HOX class I homeobox genes is significantly associated with clinical covariates in neuroblastoma using microarray expression data of 649 primary tumors. Moreover, a HOX gene expression-based classifier predicted neuroblastoma patient outcome independently of age, stage and MYCN amplification status. Among all HOX genes, HOXC9 expression was most prominently associated with favorable prognostic markers. Most notably, elevated HOXC9 expression was significantly associated with spontaneous regression in infant neuroblastoma. Re-expression of HOXC9 in three neuroblastoma cell lines led to a significant reduction in cell viability, and abrogated tumor growth almost completely in neuroblastoma xenografts. Neuroblastoma growth arrest was related to the induction of programmed cell death, as indicated by an increase in the sub-G1 fraction and translocation of phosphatidylserine to the outer membrane. Programmed cell death was associated with the release of cytochrome c from the mitochondria into the cytosol and activation of the intrinsic cascade of caspases, indicating that HOXC9 re-expression triggers the intrinsic apoptotic pathway. Collectively, our results show a strong prognostic impact of HOX gene expression in neuroblastoma, and may point towards a role of Hox-C9 in neuroblastoma spontaneous regression. Nature Publishing Group 2013-04 2013-04-11 /pmc/articles/PMC3668636/ /pubmed/23579273 http://dx.doi.org/10.1038/cddis.2013.84 Text en Copyright © 2013 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Original Article
Kocak, H
Ackermann, S
Hero, B
Kahlert, Y
Oberthuer, A
Juraeva, D
Roels, F
Theissen, J
Westermann, F
Deubzer, H
Ehemann, V
Brors, B
Odenthal, M
Berthold, F
Fischer, M
Hox-C9 activates the intrinsic pathway of apoptosis and is associated with spontaneous regression in neuroblastoma
title Hox-C9 activates the intrinsic pathway of apoptosis and is associated with spontaneous regression in neuroblastoma
title_full Hox-C9 activates the intrinsic pathway of apoptosis and is associated with spontaneous regression in neuroblastoma
title_fullStr Hox-C9 activates the intrinsic pathway of apoptosis and is associated with spontaneous regression in neuroblastoma
title_full_unstemmed Hox-C9 activates the intrinsic pathway of apoptosis and is associated with spontaneous regression in neuroblastoma
title_short Hox-C9 activates the intrinsic pathway of apoptosis and is associated with spontaneous regression in neuroblastoma
title_sort hox-c9 activates the intrinsic pathway of apoptosis and is associated with spontaneous regression in neuroblastoma
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3668636/
https://www.ncbi.nlm.nih.gov/pubmed/23579273
http://dx.doi.org/10.1038/cddis.2013.84
work_keys_str_mv AT kocakh hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT ackermanns hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT herob hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT kahlerty hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT oberthuera hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT juraevad hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT roelsf hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT theissenj hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT westermannf hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT deubzerh hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT ehemannv hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT brorsb hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT odenthalm hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT bertholdf hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma
AT fischerm hoxc9activatestheintrinsicpathwayofapoptosisandisassociatedwithspontaneousregressioninneuroblastoma