Cargando…

Quantitative analysis of mRNA expression levels and DNA methylation profiles of three neighboring genes: FUS1, NPRL2/G21 and RASSF1A in non-small cell lung cancer patients

BACKGROUND: Tumor suppressor gene (TSG) inactivation plays a crucial role in carcinogenesis. FUS1, NPRL2/G21 and RASSF1A are TSGs from LUCA region at 3p21.3, a critical chromosomal region in lung cancer development. The aim of the study was to analyze and compare the expression levels of these 3 TSG...

Descripción completa

Detalles Bibliográficos
Autores principales: Pastuszak-Lewandoska, Dorota, Kordiak, Jacek, Migdalska-Sęk, Monika, Czarnecka, Karolina H., Antczak, Adam, Górski, Paweł, Nawrot, Ewa, Kiszałkiewicz, Justyna M., Domańska, Daria, Brzeziańska-Lasota, Ewa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4484633/
https://www.ncbi.nlm.nih.gov/pubmed/26112163
http://dx.doi.org/10.1186/s12931-015-0230-6
_version_ 1782378693055741952
author Pastuszak-Lewandoska, Dorota
Kordiak, Jacek
Migdalska-Sęk, Monika
Czarnecka, Karolina H.
Antczak, Adam
Górski, Paweł
Nawrot, Ewa
Kiszałkiewicz, Justyna M.
Domańska, Daria
Brzeziańska-Lasota, Ewa
author_facet Pastuszak-Lewandoska, Dorota
Kordiak, Jacek
Migdalska-Sęk, Monika
Czarnecka, Karolina H.
Antczak, Adam
Górski, Paweł
Nawrot, Ewa
Kiszałkiewicz, Justyna M.
Domańska, Daria
Brzeziańska-Lasota, Ewa
author_sort Pastuszak-Lewandoska, Dorota
collection PubMed
description BACKGROUND: Tumor suppressor gene (TSG) inactivation plays a crucial role in carcinogenesis. FUS1, NPRL2/G21 and RASSF1A are TSGs from LUCA region at 3p21.3, a critical chromosomal region in lung cancer development. The aim of the study was to analyze and compare the expression levels of these 3 TSGs in NSCLC, as well as in macroscopically unchanged lung tissue surrounding the primary lesion, and to look for the possible epigenetic mechanism of TSG inactivation via gene promoter methylation. METHODS: Expression levels of 3 TSGs and 2 DNA methyltransferases, DNMT1 and DNMT3B, were assessed using real-time PCR method (qPCR) in 59 primary non-small cell lung tumors and the matched macroscopically unchanged lung tissue samples. Promoter methylation status of TSGs was analyzed using methylation-specific PCRs (MSP method) and Methylation Index (MI) value was calculated for each gene. RESULTS: The expression of all three TSGs were significantly different between NSCLC subtypes: RASSF1A and FUS1 expression levels were significantly lower in squamous cell carcinoma (SCC), and NPRL2/G21 in adenocarcinoma (AC). RASSF1A showed significantly lower expression in tumors vs macroscopically unchanged lung tissues. Methylation frequency was 38–76 %, depending on the gene. The highest MI value was found for RASSF1A (52 %) and the lowest for NPRL2/G21 (5 %). The simultaneous decreased expression and methylation of at least one RASSF1A allele was observed in 71 % tumor samples. Inverse correlation between gene expression and promoter methylation was found for FUS1 (rs = −0.41) in SCC subtype. Expression levels of DNMTs were significantly increased in 75–92 % NSCLCs and were significantly higher in tumors than in normal lung tissue. However, no correlation between mRNA expression levels of DNMTs and DNA methylation status of the studied TSGs was found. CONCLUSIONS: The results indicate the potential role of the studied TSGs in the differentiation of NSCLC histopathological subtypes. The significant differences in RASSF1A expression levels between NSCLC and macroscopically unchanged lung tissue highlight its possible diagnostic role in lung cancer in situ recognition. High percentage of lung tumor samples with simultaneous RASSF1A decreased expression and gene promoter methylation indicates its epigenetic silencing. However, DNMT overexpression doesn’t seem to be a critical determinate of its promoter hypermethylation.
format Online
Article
Text
id pubmed-4484633
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-44846332015-06-30 Quantitative analysis of mRNA expression levels and DNA methylation profiles of three neighboring genes: FUS1, NPRL2/G21 and RASSF1A in non-small cell lung cancer patients Pastuszak-Lewandoska, Dorota Kordiak, Jacek Migdalska-Sęk, Monika Czarnecka, Karolina H. Antczak, Adam Górski, Paweł Nawrot, Ewa Kiszałkiewicz, Justyna M. Domańska, Daria Brzeziańska-Lasota, Ewa Respir Res Research BACKGROUND: Tumor suppressor gene (TSG) inactivation plays a crucial role in carcinogenesis. FUS1, NPRL2/G21 and RASSF1A are TSGs from LUCA region at 3p21.3, a critical chromosomal region in lung cancer development. The aim of the study was to analyze and compare the expression levels of these 3 TSGs in NSCLC, as well as in macroscopically unchanged lung tissue surrounding the primary lesion, and to look for the possible epigenetic mechanism of TSG inactivation via gene promoter methylation. METHODS: Expression levels of 3 TSGs and 2 DNA methyltransferases, DNMT1 and DNMT3B, were assessed using real-time PCR method (qPCR) in 59 primary non-small cell lung tumors and the matched macroscopically unchanged lung tissue samples. Promoter methylation status of TSGs was analyzed using methylation-specific PCRs (MSP method) and Methylation Index (MI) value was calculated for each gene. RESULTS: The expression of all three TSGs were significantly different between NSCLC subtypes: RASSF1A and FUS1 expression levels were significantly lower in squamous cell carcinoma (SCC), and NPRL2/G21 in adenocarcinoma (AC). RASSF1A showed significantly lower expression in tumors vs macroscopically unchanged lung tissues. Methylation frequency was 38–76 %, depending on the gene. The highest MI value was found for RASSF1A (52 %) and the lowest for NPRL2/G21 (5 %). The simultaneous decreased expression and methylation of at least one RASSF1A allele was observed in 71 % tumor samples. Inverse correlation between gene expression and promoter methylation was found for FUS1 (rs = −0.41) in SCC subtype. Expression levels of DNMTs were significantly increased in 75–92 % NSCLCs and were significantly higher in tumors than in normal lung tissue. However, no correlation between mRNA expression levels of DNMTs and DNA methylation status of the studied TSGs was found. CONCLUSIONS: The results indicate the potential role of the studied TSGs in the differentiation of NSCLC histopathological subtypes. The significant differences in RASSF1A expression levels between NSCLC and macroscopically unchanged lung tissue highlight its possible diagnostic role in lung cancer in situ recognition. High percentage of lung tumor samples with simultaneous RASSF1A decreased expression and gene promoter methylation indicates its epigenetic silencing. However, DNMT overexpression doesn’t seem to be a critical determinate of its promoter hypermethylation. BioMed Central 2015-06-26 2015 /pmc/articles/PMC4484633/ /pubmed/26112163 http://dx.doi.org/10.1186/s12931-015-0230-6 Text en © Pastuszak-Lewandoska et al. 2015 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Pastuszak-Lewandoska, Dorota
Kordiak, Jacek
Migdalska-Sęk, Monika
Czarnecka, Karolina H.
Antczak, Adam
Górski, Paweł
Nawrot, Ewa
Kiszałkiewicz, Justyna M.
Domańska, Daria
Brzeziańska-Lasota, Ewa
Quantitative analysis of mRNA expression levels and DNA methylation profiles of three neighboring genes: FUS1, NPRL2/G21 and RASSF1A in non-small cell lung cancer patients
title Quantitative analysis of mRNA expression levels and DNA methylation profiles of three neighboring genes: FUS1, NPRL2/G21 and RASSF1A in non-small cell lung cancer patients
title_full Quantitative analysis of mRNA expression levels and DNA methylation profiles of three neighboring genes: FUS1, NPRL2/G21 and RASSF1A in non-small cell lung cancer patients
title_fullStr Quantitative analysis of mRNA expression levels and DNA methylation profiles of three neighboring genes: FUS1, NPRL2/G21 and RASSF1A in non-small cell lung cancer patients
title_full_unstemmed Quantitative analysis of mRNA expression levels and DNA methylation profiles of three neighboring genes: FUS1, NPRL2/G21 and RASSF1A in non-small cell lung cancer patients
title_short Quantitative analysis of mRNA expression levels and DNA methylation profiles of three neighboring genes: FUS1, NPRL2/G21 and RASSF1A in non-small cell lung cancer patients
title_sort quantitative analysis of mrna expression levels and dna methylation profiles of three neighboring genes: fus1, nprl2/g21 and rassf1a in non-small cell lung cancer patients
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4484633/
https://www.ncbi.nlm.nih.gov/pubmed/26112163
http://dx.doi.org/10.1186/s12931-015-0230-6
work_keys_str_mv AT pastuszaklewandoskadorota quantitativeanalysisofmrnaexpressionlevelsanddnamethylationprofilesofthreeneighboringgenesfus1nprl2g21andrassf1ainnonsmallcelllungcancerpatients
AT kordiakjacek quantitativeanalysisofmrnaexpressionlevelsanddnamethylationprofilesofthreeneighboringgenesfus1nprl2g21andrassf1ainnonsmallcelllungcancerpatients
AT migdalskasekmonika quantitativeanalysisofmrnaexpressionlevelsanddnamethylationprofilesofthreeneighboringgenesfus1nprl2g21andrassf1ainnonsmallcelllungcancerpatients
AT czarneckakarolinah quantitativeanalysisofmrnaexpressionlevelsanddnamethylationprofilesofthreeneighboringgenesfus1nprl2g21andrassf1ainnonsmallcelllungcancerpatients
AT antczakadam quantitativeanalysisofmrnaexpressionlevelsanddnamethylationprofilesofthreeneighboringgenesfus1nprl2g21andrassf1ainnonsmallcelllungcancerpatients
AT gorskipaweł quantitativeanalysisofmrnaexpressionlevelsanddnamethylationprofilesofthreeneighboringgenesfus1nprl2g21andrassf1ainnonsmallcelllungcancerpatients
AT nawrotewa quantitativeanalysisofmrnaexpressionlevelsanddnamethylationprofilesofthreeneighboringgenesfus1nprl2g21andrassf1ainnonsmallcelllungcancerpatients
AT kiszałkiewiczjustynam quantitativeanalysisofmrnaexpressionlevelsanddnamethylationprofilesofthreeneighboringgenesfus1nprl2g21andrassf1ainnonsmallcelllungcancerpatients
AT domanskadaria quantitativeanalysisofmrnaexpressionlevelsanddnamethylationprofilesofthreeneighboringgenesfus1nprl2g21andrassf1ainnonsmallcelllungcancerpatients
AT brzezianskalasotaewa quantitativeanalysisofmrnaexpressionlevelsanddnamethylationprofilesofthreeneighboringgenesfus1nprl2g21andrassf1ainnonsmallcelllungcancerpatients