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A comprehensive look at transcription factor gene expression changes in colorectal adenomas

BACKGROUND: Biological processes are controlled by transcription networks. Expression changes of transcription factor (TF) genes in precancerous lesions are therefore crucial events in tumorigenesis. Our aim was to obtain a comprehensive picture of these changes in colorectal adenomas. METHODS: Usin...

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Autores principales: Vonlanthen, Janine, Okoniewski, Michal J, Menigatti, Mirco, Cattaneo, Elisa, Pellegrini-Ochsner, Daniela, Haider, Ritva, Jiricny, Josef, Staiano, Teresa, Buffoli, Federico, Marra, Giancarlo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4078005/
https://www.ncbi.nlm.nih.gov/pubmed/24472434
http://dx.doi.org/10.1186/1471-2407-14-46
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author Vonlanthen, Janine
Okoniewski, Michal J
Menigatti, Mirco
Cattaneo, Elisa
Pellegrini-Ochsner, Daniela
Haider, Ritva
Jiricny, Josef
Staiano, Teresa
Buffoli, Federico
Marra, Giancarlo
author_facet Vonlanthen, Janine
Okoniewski, Michal J
Menigatti, Mirco
Cattaneo, Elisa
Pellegrini-Ochsner, Daniela
Haider, Ritva
Jiricny, Josef
Staiano, Teresa
Buffoli, Federico
Marra, Giancarlo
author_sort Vonlanthen, Janine
collection PubMed
description BACKGROUND: Biological processes are controlled by transcription networks. Expression changes of transcription factor (TF) genes in precancerous lesions are therefore crucial events in tumorigenesis. Our aim was to obtain a comprehensive picture of these changes in colorectal adenomas. METHODS: Using a 3-pronged selection procedure, we analyzed transcriptomic data on 34 human tissue samples (17 adenomas and paired samples of normal mucosa, all collected with ethics committee approval and written, informed patient consent) to identify TFs with highly significant tumor-associated gene expression changes whose potential roles in colorectal tumorigenesis have been under-researched. Microarray data were subjected to stringent statistical analysis of TF expression in tumor vs. normal tissues, MetaCore-mediated identification of TF networks displaying enrichment for genes that were differentially expressed in tumors, and a novel quantitative analysis of the publications examining the TF genes’ roles in colorectal tumorigenesis. RESULTS: The 261 TF genes identified with this procedure included DACH1, which plays essential roles in the proper proliferation and differentiation of retinal and leg precursor cell populations in Drosophila melanogaster. Its possible roles in colorectal tumorigenesis are completely unknown, but it was found to be markedly overexpressed (mRNA and protein) in all colorectal adenomas and in most colorectal carcinomas. However, DACH1 expression was absent in some carcinomas, most of which were DNA mismatch-repair deficient. When networks were built using the set of TF genes identified by all three selection procedures, as well as the entire set of transcriptomic changes in adenomas, five hub genes (TGFB1, BIRC5, MYB, NR3C1, and TERT) where identified as putatively crucial components of the adenomatous transformation process. CONCLUSION: The transcription-regulating network of colorectal adenomas (compared with that of normal colorectal mucosa) is characterized by significantly altered expression of over 250 TF genes, many of which have never been investigated in relation to colorectal tumorigenesis.
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spelling pubmed-40780052014-07-03 A comprehensive look at transcription factor gene expression changes in colorectal adenomas Vonlanthen, Janine Okoniewski, Michal J Menigatti, Mirco Cattaneo, Elisa Pellegrini-Ochsner, Daniela Haider, Ritva Jiricny, Josef Staiano, Teresa Buffoli, Federico Marra, Giancarlo BMC Cancer Research Article BACKGROUND: Biological processes are controlled by transcription networks. Expression changes of transcription factor (TF) genes in precancerous lesions are therefore crucial events in tumorigenesis. Our aim was to obtain a comprehensive picture of these changes in colorectal adenomas. METHODS: Using a 3-pronged selection procedure, we analyzed transcriptomic data on 34 human tissue samples (17 adenomas and paired samples of normal mucosa, all collected with ethics committee approval and written, informed patient consent) to identify TFs with highly significant tumor-associated gene expression changes whose potential roles in colorectal tumorigenesis have been under-researched. Microarray data were subjected to stringent statistical analysis of TF expression in tumor vs. normal tissues, MetaCore-mediated identification of TF networks displaying enrichment for genes that were differentially expressed in tumors, and a novel quantitative analysis of the publications examining the TF genes’ roles in colorectal tumorigenesis. RESULTS: The 261 TF genes identified with this procedure included DACH1, which plays essential roles in the proper proliferation and differentiation of retinal and leg precursor cell populations in Drosophila melanogaster. Its possible roles in colorectal tumorigenesis are completely unknown, but it was found to be markedly overexpressed (mRNA and protein) in all colorectal adenomas and in most colorectal carcinomas. However, DACH1 expression was absent in some carcinomas, most of which were DNA mismatch-repair deficient. When networks were built using the set of TF genes identified by all three selection procedures, as well as the entire set of transcriptomic changes in adenomas, five hub genes (TGFB1, BIRC5, MYB, NR3C1, and TERT) where identified as putatively crucial components of the adenomatous transformation process. CONCLUSION: The transcription-regulating network of colorectal adenomas (compared with that of normal colorectal mucosa) is characterized by significantly altered expression of over 250 TF genes, many of which have never been investigated in relation to colorectal tumorigenesis. BioMed Central 2014-01-29 /pmc/articles/PMC4078005/ /pubmed/24472434 http://dx.doi.org/10.1186/1471-2407-14-46 Text en Copyright © 2014 Vonlanthen 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
Vonlanthen, Janine
Okoniewski, Michal J
Menigatti, Mirco
Cattaneo, Elisa
Pellegrini-Ochsner, Daniela
Haider, Ritva
Jiricny, Josef
Staiano, Teresa
Buffoli, Federico
Marra, Giancarlo
A comprehensive look at transcription factor gene expression changes in colorectal adenomas
title A comprehensive look at transcription factor gene expression changes in colorectal adenomas
title_full A comprehensive look at transcription factor gene expression changes in colorectal adenomas
title_fullStr A comprehensive look at transcription factor gene expression changes in colorectal adenomas
title_full_unstemmed A comprehensive look at transcription factor gene expression changes in colorectal adenomas
title_short A comprehensive look at transcription factor gene expression changes in colorectal adenomas
title_sort comprehensive look at transcription factor gene expression changes in colorectal adenomas
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4078005/
https://www.ncbi.nlm.nih.gov/pubmed/24472434
http://dx.doi.org/10.1186/1471-2407-14-46
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