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Comparative gene expression profiling of human metallothionein-3 up-regulation in neuroblastoma cells and its impact on susceptibility to cisplatin

Human metallothionein-3 (hMT-3), also known as growth inhibitory factor, is predominantly expressed in the central nervous system. hMT-3 is presumed to participate in the processes of heavy metal detoxification, regulation of metabolism and protection against oxidative damage of free radicals in the...

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Autores principales: Merlos Rodrigo, Miguel Angel, Dostalova, Simona, Buchtelova, Hana, Strmiska, Vladislav, Michalek, Petr, Krizkova, Sona, Vicha, Ales, Jencova, Pavla, Eckschlager, Tomas, Stiborova, Marie, Heger, Zbynek, Adam, Vojtech
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5796984/
https://www.ncbi.nlm.nih.gov/pubmed/29435113
http://dx.doi.org/10.18632/oncotarget.23333
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author Merlos Rodrigo, Miguel Angel
Dostalova, Simona
Buchtelova, Hana
Strmiska, Vladislav
Michalek, Petr
Krizkova, Sona
Vicha, Ales
Jencova, Pavla
Eckschlager, Tomas
Stiborova, Marie
Heger, Zbynek
Adam, Vojtech
author_facet Merlos Rodrigo, Miguel Angel
Dostalova, Simona
Buchtelova, Hana
Strmiska, Vladislav
Michalek, Petr
Krizkova, Sona
Vicha, Ales
Jencova, Pavla
Eckschlager, Tomas
Stiborova, Marie
Heger, Zbynek
Adam, Vojtech
author_sort Merlos Rodrigo, Miguel Angel
collection PubMed
description Human metallothionein-3 (hMT-3), also known as growth inhibitory factor, is predominantly expressed in the central nervous system. hMT-3 is presumed to participate in the processes of heavy metal detoxification, regulation of metabolism and protection against oxidative damage of free radicals in the central nervous system; thus, it could play important neuromodulatory and neuroprotective roles. However, the primary functions of hMT-3 and the mechanism underlying its multiple functions in neuroblastoma have not been elucidated so far. First, we confirmed relatively high expression of hMT-3 encoding mRNA in biopsies (n = 23) from high-risk neuroblastoma subjects. Therefore, we focused on investigation of the impact of hMT-3 up-regulation in N-Myc amplifying neuroblastoma cells. The differentially up-regulated genes involved in biological pathways related to cellular senescence and cell cycle were identified using electrochemical microarray with consequent bioinformatic processing. Further, as experimental verification of microarray data, the cytotoxicity of the cisplatin (CDDP) was examined in hMT-3 and mock cells by MTT and clonogenic assays. Overall, our data strongly suggest that up-regulation of hMT-3 positively correlates with the genes involved in oncogene-induced senescence (CDKN2B and ANAPC5) or apoptosis (CASP4). Moreover, we identified a significant increase in chemoresistance to cisplatin (CDDP) due to hMT-3 up-regulation (24IC(50): 7.5 vs. 19.8 μg/ml), indicating its multipurpose biological significance.
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spelling pubmed-57969842018-02-12 Comparative gene expression profiling of human metallothionein-3 up-regulation in neuroblastoma cells and its impact on susceptibility to cisplatin Merlos Rodrigo, Miguel Angel Dostalova, Simona Buchtelova, Hana Strmiska, Vladislav Michalek, Petr Krizkova, Sona Vicha, Ales Jencova, Pavla Eckschlager, Tomas Stiborova, Marie Heger, Zbynek Adam, Vojtech Oncotarget Research Paper Human metallothionein-3 (hMT-3), also known as growth inhibitory factor, is predominantly expressed in the central nervous system. hMT-3 is presumed to participate in the processes of heavy metal detoxification, regulation of metabolism and protection against oxidative damage of free radicals in the central nervous system; thus, it could play important neuromodulatory and neuroprotective roles. However, the primary functions of hMT-3 and the mechanism underlying its multiple functions in neuroblastoma have not been elucidated so far. First, we confirmed relatively high expression of hMT-3 encoding mRNA in biopsies (n = 23) from high-risk neuroblastoma subjects. Therefore, we focused on investigation of the impact of hMT-3 up-regulation in N-Myc amplifying neuroblastoma cells. The differentially up-regulated genes involved in biological pathways related to cellular senescence and cell cycle were identified using electrochemical microarray with consequent bioinformatic processing. Further, as experimental verification of microarray data, the cytotoxicity of the cisplatin (CDDP) was examined in hMT-3 and mock cells by MTT and clonogenic assays. Overall, our data strongly suggest that up-regulation of hMT-3 positively correlates with the genes involved in oncogene-induced senescence (CDKN2B and ANAPC5) or apoptosis (CASP4). Moreover, we identified a significant increase in chemoresistance to cisplatin (CDDP) due to hMT-3 up-regulation (24IC(50): 7.5 vs. 19.8 μg/ml), indicating its multipurpose biological significance. Impact Journals LLC 2017-12-16 /pmc/articles/PMC5796984/ /pubmed/29435113 http://dx.doi.org/10.18632/oncotarget.23333 Text en Copyright: © 2018 Merlos Rodrigo et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
Merlos Rodrigo, Miguel Angel
Dostalova, Simona
Buchtelova, Hana
Strmiska, Vladislav
Michalek, Petr
Krizkova, Sona
Vicha, Ales
Jencova, Pavla
Eckschlager, Tomas
Stiborova, Marie
Heger, Zbynek
Adam, Vojtech
Comparative gene expression profiling of human metallothionein-3 up-regulation in neuroblastoma cells and its impact on susceptibility to cisplatin
title Comparative gene expression profiling of human metallothionein-3 up-regulation in neuroblastoma cells and its impact on susceptibility to cisplatin
title_full Comparative gene expression profiling of human metallothionein-3 up-regulation in neuroblastoma cells and its impact on susceptibility to cisplatin
title_fullStr Comparative gene expression profiling of human metallothionein-3 up-regulation in neuroblastoma cells and its impact on susceptibility to cisplatin
title_full_unstemmed Comparative gene expression profiling of human metallothionein-3 up-regulation in neuroblastoma cells and its impact on susceptibility to cisplatin
title_short Comparative gene expression profiling of human metallothionein-3 up-regulation in neuroblastoma cells and its impact on susceptibility to cisplatin
title_sort comparative gene expression profiling of human metallothionein-3 up-regulation in neuroblastoma cells and its impact on susceptibility to cisplatin
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5796984/
https://www.ncbi.nlm.nih.gov/pubmed/29435113
http://dx.doi.org/10.18632/oncotarget.23333
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