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Introduction of in vitro transcribed ENO1 mRNA into neuroblastoma cells induces cell death

BACKGROUND: Neuroblastoma is a solid tumour of childhood often with an unfavourable outcome. One common genetic feature in aggressive tumours is 1p-deletion. The α-enolase (ENO1) gene is located in chromosome region 1p36.2, within the common region of deletion in neuroblastoma. One alternative trans...

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Autores principales: Ejeskär, Katarina, Krona, Cecilia, Carén, Helena, Zaibak, Faten, Li, Lingli, Martinsson, Tommy, Ioannou, Panayiotis A
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1327688/
https://www.ncbi.nlm.nih.gov/pubmed/16359544
http://dx.doi.org/10.1186/1471-2407-5-161
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author Ejeskär, Katarina
Krona, Cecilia
Carén, Helena
Zaibak, Faten
Li, Lingli
Martinsson, Tommy
Ioannou, Panayiotis A
author_facet Ejeskär, Katarina
Krona, Cecilia
Carén, Helena
Zaibak, Faten
Li, Lingli
Martinsson, Tommy
Ioannou, Panayiotis A
author_sort Ejeskär, Katarina
collection PubMed
description BACKGROUND: Neuroblastoma is a solid tumour of childhood often with an unfavourable outcome. One common genetic feature in aggressive tumours is 1p-deletion. The α-enolase (ENO1) gene is located in chromosome region 1p36.2, within the common region of deletion in neuroblastoma. One alternative translated product of the ENO1 gene, known as MBP-1, acts as a negative regulator of the c-myc oncogene, making the ENO1 gene a candidate as a tumour suppressor gene. METHODS: Methods used in this study are transfection of cDNA-vectors and in vitro transcribed mRNA, cell growth assay, TUNEL-assay, real-time RT-PCR (TaqMan) for expression studies, genomic sequencing and DHPLC for mutation detection. RESULTS: Here we demonstrate that transfection of ENO1 cDNA into 1p-deleted neuroblastoma cell lines causes' reduced number of viable cells over time compared to a negative control and that it induces apoptosis. Interestingly, a similar but much stronger dose-dependent reduction of cell growth was observed by transfection of in vitro transcribed ENO1 mRNA into neuroblastoma cells. These effects could also be shown in non-neuroblastoma cells (293-cells), indicating ENO1 to have general tumour suppressor activity. Expression of ENO1 is detectable in primary neuroblastomas of all different stages and no difference in the level of expression can be detected between 1p-deleted and 1p-intact tumour samples. Although small numbers (11 primary neuroblastomas), there is some evidence that Stage 4 tumours has a lower level of ENO1-mRNA than Stage 2 tumours (p = 0.01). However, mutation screening of 44 primary neuroblastomas of all different stages, failed to detect any mutations. CONCLUSION: Our studies indicate that ENO1 has tumour suppressor activity and that high level of ENO1 expression has growth inhibitory effects.
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spelling pubmed-13276882006-01-14 Introduction of in vitro transcribed ENO1 mRNA into neuroblastoma cells induces cell death Ejeskär, Katarina Krona, Cecilia Carén, Helena Zaibak, Faten Li, Lingli Martinsson, Tommy Ioannou, Panayiotis A BMC Cancer Research Article BACKGROUND: Neuroblastoma is a solid tumour of childhood often with an unfavourable outcome. One common genetic feature in aggressive tumours is 1p-deletion. The α-enolase (ENO1) gene is located in chromosome region 1p36.2, within the common region of deletion in neuroblastoma. One alternative translated product of the ENO1 gene, known as MBP-1, acts as a negative regulator of the c-myc oncogene, making the ENO1 gene a candidate as a tumour suppressor gene. METHODS: Methods used in this study are transfection of cDNA-vectors and in vitro transcribed mRNA, cell growth assay, TUNEL-assay, real-time RT-PCR (TaqMan) for expression studies, genomic sequencing and DHPLC for mutation detection. RESULTS: Here we demonstrate that transfection of ENO1 cDNA into 1p-deleted neuroblastoma cell lines causes' reduced number of viable cells over time compared to a negative control and that it induces apoptosis. Interestingly, a similar but much stronger dose-dependent reduction of cell growth was observed by transfection of in vitro transcribed ENO1 mRNA into neuroblastoma cells. These effects could also be shown in non-neuroblastoma cells (293-cells), indicating ENO1 to have general tumour suppressor activity. Expression of ENO1 is detectable in primary neuroblastomas of all different stages and no difference in the level of expression can be detected between 1p-deleted and 1p-intact tumour samples. Although small numbers (11 primary neuroblastomas), there is some evidence that Stage 4 tumours has a lower level of ENO1-mRNA than Stage 2 tumours (p = 0.01). However, mutation screening of 44 primary neuroblastomas of all different stages, failed to detect any mutations. CONCLUSION: Our studies indicate that ENO1 has tumour suppressor activity and that high level of ENO1 expression has growth inhibitory effects. BioMed Central 2005-12-16 /pmc/articles/PMC1327688/ /pubmed/16359544 http://dx.doi.org/10.1186/1471-2407-5-161 Text en Copyright © 2005 Ejeskär et al; licensee BioMed Central Ltd.
spellingShingle Research Article
Ejeskär, Katarina
Krona, Cecilia
Carén, Helena
Zaibak, Faten
Li, Lingli
Martinsson, Tommy
Ioannou, Panayiotis A
Introduction of in vitro transcribed ENO1 mRNA into neuroblastoma cells induces cell death
title Introduction of in vitro transcribed ENO1 mRNA into neuroblastoma cells induces cell death
title_full Introduction of in vitro transcribed ENO1 mRNA into neuroblastoma cells induces cell death
title_fullStr Introduction of in vitro transcribed ENO1 mRNA into neuroblastoma cells induces cell death
title_full_unstemmed Introduction of in vitro transcribed ENO1 mRNA into neuroblastoma cells induces cell death
title_short Introduction of in vitro transcribed ENO1 mRNA into neuroblastoma cells induces cell death
title_sort introduction of in vitro transcribed eno1 mrna into neuroblastoma cells induces cell death
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1327688/
https://www.ncbi.nlm.nih.gov/pubmed/16359544
http://dx.doi.org/10.1186/1471-2407-5-161
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