Cargando…

Methylation-associated down-regulation of RASSF1A and up-regulation of RASSF1C in pancreatic endocrine tumors

BACKGROUND: RASSF1A gene silencing by DNA methylation has been suggested as a major event in pancreatic endocrine tumor (PET) but RASSF1A expression has never been studied. The RASSF1 locus contains two CpG islands (A and C) and generates seven transcripts (RASSF1A-RASSF1G) by differential promoter...

Descripción completa

Detalles Bibliográficos
Autores principales: Malpeli, Giorgio, Amato, Eliana, Dandrea, Mario, Fumagalli, Caterina, Debattisti, Valentina, Boninsegna, Letizia, Pelosi, Giuseppe, Falconi, Massimo, Scarpa, Aldo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3170651/
https://www.ncbi.nlm.nih.gov/pubmed/21838870
http://dx.doi.org/10.1186/1471-2407-11-351
_version_ 1782211659015651328
author Malpeli, Giorgio
Amato, Eliana
Dandrea, Mario
Fumagalli, Caterina
Debattisti, Valentina
Boninsegna, Letizia
Pelosi, Giuseppe
Falconi, Massimo
Scarpa, Aldo
author_facet Malpeli, Giorgio
Amato, Eliana
Dandrea, Mario
Fumagalli, Caterina
Debattisti, Valentina
Boninsegna, Letizia
Pelosi, Giuseppe
Falconi, Massimo
Scarpa, Aldo
author_sort Malpeli, Giorgio
collection PubMed
description BACKGROUND: RASSF1A gene silencing by DNA methylation has been suggested as a major event in pancreatic endocrine tumor (PET) but RASSF1A expression has never been studied. The RASSF1 locus contains two CpG islands (A and C) and generates seven transcripts (RASSF1A-RASSF1G) by differential promoter usage and alternative splicing. METHODS: We studied 20 primary PETs, their matched normal pancreas and three PET cell lines for the (i) methylation status of the RASSF1 CpG islands using methylation-specific PCR and pyrosequencing and (ii) expression of RASSF1 isoforms by quantitative RT-PCR in 13 cases. CpG island A methylation was evaluated by methylation-specific PCR (MSP) and by quantitative methylation-specific PCR (qMSP); pyrosequencing was applied to quantify the methylation of 51 CpGs also encompassing those explored by MSP and qMSP approaches. RESULTS: MSP detected methylation in 16/20 (80%) PETs and 13/20 (65%) normal pancreas. At qMSP, 11/20 PETs (55%) and 9/20 (45%) normals were methylated in at least 20% of RASSF1A alleles. Pyrosequencing showed variable distribution and levels of methylation within and among samples, with PETs having average methylation higher than normals in 15/20 (75%) cases (P = 0.01). The evaluation of mRNA expression of RASSF1 variants showed that: i) RASSF1A was always expressed in PET and normal tissues, but it was, on average, expressed 6.8 times less in PET (P = 0.003); ii) RASSF1A methylation inversely correlated with its expression; iii) RASSF1 isoforms were rarely found, except for RASSF1B that was always expressed and RASSF1C whose expression was 11.4 times higher in PET than in normal tissue (P = 0.001). A correlation between RASSF1A expression and gene methylation was found in two of the three PET cell lines, which also showed a significant increase in RASSF1A expression upon demethylating treatment. CONCLUSIONS: RASSF1A gene methylation in PET is higher than normal pancreas in no more than 75% of cases and as such it cannot be considered a marker for this neoplasm. RASSF1A is always expressed in PET and normal pancreas and its levels are inversely correlated with gene methylation. Isoform RASSF1C is overexpressed in PET and the recent demonstration of its involvement in the regulation of the Wnt pathway points to a potential pathogenetic role in tumor development.
format Online
Article
Text
id pubmed-3170651
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-31706512011-09-11 Methylation-associated down-regulation of RASSF1A and up-regulation of RASSF1C in pancreatic endocrine tumors Malpeli, Giorgio Amato, Eliana Dandrea, Mario Fumagalli, Caterina Debattisti, Valentina Boninsegna, Letizia Pelosi, Giuseppe Falconi, Massimo Scarpa, Aldo BMC Cancer Research Article BACKGROUND: RASSF1A gene silencing by DNA methylation has been suggested as a major event in pancreatic endocrine tumor (PET) but RASSF1A expression has never been studied. The RASSF1 locus contains two CpG islands (A and C) and generates seven transcripts (RASSF1A-RASSF1G) by differential promoter usage and alternative splicing. METHODS: We studied 20 primary PETs, their matched normal pancreas and three PET cell lines for the (i) methylation status of the RASSF1 CpG islands using methylation-specific PCR and pyrosequencing and (ii) expression of RASSF1 isoforms by quantitative RT-PCR in 13 cases. CpG island A methylation was evaluated by methylation-specific PCR (MSP) and by quantitative methylation-specific PCR (qMSP); pyrosequencing was applied to quantify the methylation of 51 CpGs also encompassing those explored by MSP and qMSP approaches. RESULTS: MSP detected methylation in 16/20 (80%) PETs and 13/20 (65%) normal pancreas. At qMSP, 11/20 PETs (55%) and 9/20 (45%) normals were methylated in at least 20% of RASSF1A alleles. Pyrosequencing showed variable distribution and levels of methylation within and among samples, with PETs having average methylation higher than normals in 15/20 (75%) cases (P = 0.01). The evaluation of mRNA expression of RASSF1 variants showed that: i) RASSF1A was always expressed in PET and normal tissues, but it was, on average, expressed 6.8 times less in PET (P = 0.003); ii) RASSF1A methylation inversely correlated with its expression; iii) RASSF1 isoforms were rarely found, except for RASSF1B that was always expressed and RASSF1C whose expression was 11.4 times higher in PET than in normal tissue (P = 0.001). A correlation between RASSF1A expression and gene methylation was found in two of the three PET cell lines, which also showed a significant increase in RASSF1A expression upon demethylating treatment. CONCLUSIONS: RASSF1A gene methylation in PET is higher than normal pancreas in no more than 75% of cases and as such it cannot be considered a marker for this neoplasm. RASSF1A is always expressed in PET and normal pancreas and its levels are inversely correlated with gene methylation. Isoform RASSF1C is overexpressed in PET and the recent demonstration of its involvement in the regulation of the Wnt pathway points to a potential pathogenetic role in tumor development. BioMed Central 2011-08-12 /pmc/articles/PMC3170651/ /pubmed/21838870 http://dx.doi.org/10.1186/1471-2407-11-351 Text en Copyright ©2011 Malpeli et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Malpeli, Giorgio
Amato, Eliana
Dandrea, Mario
Fumagalli, Caterina
Debattisti, Valentina
Boninsegna, Letizia
Pelosi, Giuseppe
Falconi, Massimo
Scarpa, Aldo
Methylation-associated down-regulation of RASSF1A and up-regulation of RASSF1C in pancreatic endocrine tumors
title Methylation-associated down-regulation of RASSF1A and up-regulation of RASSF1C in pancreatic endocrine tumors
title_full Methylation-associated down-regulation of RASSF1A and up-regulation of RASSF1C in pancreatic endocrine tumors
title_fullStr Methylation-associated down-regulation of RASSF1A and up-regulation of RASSF1C in pancreatic endocrine tumors
title_full_unstemmed Methylation-associated down-regulation of RASSF1A and up-regulation of RASSF1C in pancreatic endocrine tumors
title_short Methylation-associated down-regulation of RASSF1A and up-regulation of RASSF1C in pancreatic endocrine tumors
title_sort methylation-associated down-regulation of rassf1a and up-regulation of rassf1c in pancreatic endocrine tumors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3170651/
https://www.ncbi.nlm.nih.gov/pubmed/21838870
http://dx.doi.org/10.1186/1471-2407-11-351
work_keys_str_mv AT malpeligiorgio methylationassociateddownregulationofrassf1aandupregulationofrassf1cinpancreaticendocrinetumors
AT amatoeliana methylationassociateddownregulationofrassf1aandupregulationofrassf1cinpancreaticendocrinetumors
AT dandreamario methylationassociateddownregulationofrassf1aandupregulationofrassf1cinpancreaticendocrinetumors
AT fumagallicaterina methylationassociateddownregulationofrassf1aandupregulationofrassf1cinpancreaticendocrinetumors
AT debattistivalentina methylationassociateddownregulationofrassf1aandupregulationofrassf1cinpancreaticendocrinetumors
AT boninsegnaletizia methylationassociateddownregulationofrassf1aandupregulationofrassf1cinpancreaticendocrinetumors
AT pelosigiuseppe methylationassociateddownregulationofrassf1aandupregulationofrassf1cinpancreaticendocrinetumors
AT falconimassimo methylationassociateddownregulationofrassf1aandupregulationofrassf1cinpancreaticendocrinetumors
AT scarpaaldo methylationassociateddownregulationofrassf1aandupregulationofrassf1cinpancreaticendocrinetumors