Cargando…

Molecular characterization of colorectal adenomas reveals POFUT1 as a candidate driver of tumor progression

Removal of colorectal adenomas is an effective strategy to reduce colorectal cancer (CRC) mortality rates. However, as only a minority of adenomas progress to cancer, such strategies may lead to overtreatment. The present study aimed to characterize adenomas by in‐depth molecular profiling, to obtai...

Descripción completa

Detalles Bibliográficos
Autores principales: Komor, Malgorzata A., de Wit, Meike, van den Berg, Jose, Martens de Kemp, Sanne R., Delis‐van Diemen, Pien M., Bolijn, Anne S., Tijssen, Marianne, Schelfhorst, Tim, Piersma, Sander R., Chiasserini, Davide, Sanders, Joyce, Rausch, Christian, Hoogstrate, Youri, Stubbs, Andrew P., de Jong, Mark, Jenster, Guido, Carvalho, Beatriz, Meijer, Gerrit A., Jimenez, Connie R., Fijneman, Remond J.A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7027554/
https://www.ncbi.nlm.nih.gov/pubmed/31411736
http://dx.doi.org/10.1002/ijc.32627
_version_ 1783498886730481664
author Komor, Malgorzata A.
de Wit, Meike
van den Berg, Jose
Martens de Kemp, Sanne R.
Delis‐van Diemen, Pien M.
Bolijn, Anne S.
Tijssen, Marianne
Schelfhorst, Tim
Piersma, Sander R.
Chiasserini, Davide
Sanders, Joyce
Rausch, Christian
Hoogstrate, Youri
Stubbs, Andrew P.
de Jong, Mark
Jenster, Guido
Carvalho, Beatriz
Meijer, Gerrit A.
Jimenez, Connie R.
Fijneman, Remond J.A.
author_facet Komor, Malgorzata A.
de Wit, Meike
van den Berg, Jose
Martens de Kemp, Sanne R.
Delis‐van Diemen, Pien M.
Bolijn, Anne S.
Tijssen, Marianne
Schelfhorst, Tim
Piersma, Sander R.
Chiasserini, Davide
Sanders, Joyce
Rausch, Christian
Hoogstrate, Youri
Stubbs, Andrew P.
de Jong, Mark
Jenster, Guido
Carvalho, Beatriz
Meijer, Gerrit A.
Jimenez, Connie R.
Fijneman, Remond J.A.
author_sort Komor, Malgorzata A.
collection PubMed
description Removal of colorectal adenomas is an effective strategy to reduce colorectal cancer (CRC) mortality rates. However, as only a minority of adenomas progress to cancer, such strategies may lead to overtreatment. The present study aimed to characterize adenomas by in‐depth molecular profiling, to obtain insights into altered biology associated with the colorectal adenoma‐to‐carcinoma progression. We obtained low‐coverage whole genome sequencing, RNA sequencing and tandem mass spectrometry data for 30 CRCs, 30 adenomas and 18 normal adjacent colon samples. These data were used for DNA copy number aberrations profiling, differential expression, gene set enrichment and gene‐dosage effect analysis. Protein expression was independently validated by immunohistochemistry on tissue microarrays and in patient‐derived colorectal adenoma organoids. Stroma percentage was determined by digital image analysis of tissue sections. Twenty‐four out of 30 adenomas could be unambiguously classified as high risk (n = 9) or low risk (n = 15) of progressing to cancer, based on DNA copy number profiles. Biological processes more prevalent in high‐risk than low‐risk adenomas were related to proliferation, tumor microenvironment and Notch, Wnt, PI3K/AKT/mTOR and Hedgehog signaling, while metabolic processes and protein secretion were enriched in low‐risk adenomas. DNA copy number driven gene‐dosage effect in high‐risk adenomas and cancers was observed for POFUT1, RPRD1B and EIF6. Increased POFUT1 expression in high‐risk adenomas was validated in tissue samples and organoids. High POFUT1 expression was also associated with Notch signaling enrichment and with decreased goblet cells differentiation. In‐depth molecular characterization of colorectal adenomas revealed POFUT1 and Notch signaling as potential drivers of tumor progression.
format Online
Article
Text
id pubmed-7027554
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley & Sons, Inc.
record_format MEDLINE/PubMed
spelling pubmed-70275542020-02-24 Molecular characterization of colorectal adenomas reveals POFUT1 as a candidate driver of tumor progression Komor, Malgorzata A. de Wit, Meike van den Berg, Jose Martens de Kemp, Sanne R. Delis‐van Diemen, Pien M. Bolijn, Anne S. Tijssen, Marianne Schelfhorst, Tim Piersma, Sander R. Chiasserini, Davide Sanders, Joyce Rausch, Christian Hoogstrate, Youri Stubbs, Andrew P. de Jong, Mark Jenster, Guido Carvalho, Beatriz Meijer, Gerrit A. Jimenez, Connie R. Fijneman, Remond J.A. Int J Cancer Molecular Cancer Biology Removal of colorectal adenomas is an effective strategy to reduce colorectal cancer (CRC) mortality rates. However, as only a minority of adenomas progress to cancer, such strategies may lead to overtreatment. The present study aimed to characterize adenomas by in‐depth molecular profiling, to obtain insights into altered biology associated with the colorectal adenoma‐to‐carcinoma progression. We obtained low‐coverage whole genome sequencing, RNA sequencing and tandem mass spectrometry data for 30 CRCs, 30 adenomas and 18 normal adjacent colon samples. These data were used for DNA copy number aberrations profiling, differential expression, gene set enrichment and gene‐dosage effect analysis. Protein expression was independently validated by immunohistochemistry on tissue microarrays and in patient‐derived colorectal adenoma organoids. Stroma percentage was determined by digital image analysis of tissue sections. Twenty‐four out of 30 adenomas could be unambiguously classified as high risk (n = 9) or low risk (n = 15) of progressing to cancer, based on DNA copy number profiles. Biological processes more prevalent in high‐risk than low‐risk adenomas were related to proliferation, tumor microenvironment and Notch, Wnt, PI3K/AKT/mTOR and Hedgehog signaling, while metabolic processes and protein secretion were enriched in low‐risk adenomas. DNA copy number driven gene‐dosage effect in high‐risk adenomas and cancers was observed for POFUT1, RPRD1B and EIF6. Increased POFUT1 expression in high‐risk adenomas was validated in tissue samples and organoids. High POFUT1 expression was also associated with Notch signaling enrichment and with decreased goblet cells differentiation. In‐depth molecular characterization of colorectal adenomas revealed POFUT1 and Notch signaling as potential drivers of tumor progression. John Wiley & Sons, Inc. 2019-08-30 2020-04-01 /pmc/articles/PMC7027554/ /pubmed/31411736 http://dx.doi.org/10.1002/ijc.32627 Text en © 2019 The Authors. International Journal of Cancer published by John Wiley & Sons Ltd on behalf of UICC This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Molecular Cancer Biology
Komor, Malgorzata A.
de Wit, Meike
van den Berg, Jose
Martens de Kemp, Sanne R.
Delis‐van Diemen, Pien M.
Bolijn, Anne S.
Tijssen, Marianne
Schelfhorst, Tim
Piersma, Sander R.
Chiasserini, Davide
Sanders, Joyce
Rausch, Christian
Hoogstrate, Youri
Stubbs, Andrew P.
de Jong, Mark
Jenster, Guido
Carvalho, Beatriz
Meijer, Gerrit A.
Jimenez, Connie R.
Fijneman, Remond J.A.
Molecular characterization of colorectal adenomas reveals POFUT1 as a candidate driver of tumor progression
title Molecular characterization of colorectal adenomas reveals POFUT1 as a candidate driver of tumor progression
title_full Molecular characterization of colorectal adenomas reveals POFUT1 as a candidate driver of tumor progression
title_fullStr Molecular characterization of colorectal adenomas reveals POFUT1 as a candidate driver of tumor progression
title_full_unstemmed Molecular characterization of colorectal adenomas reveals POFUT1 as a candidate driver of tumor progression
title_short Molecular characterization of colorectal adenomas reveals POFUT1 as a candidate driver of tumor progression
title_sort molecular characterization of colorectal adenomas reveals pofut1 as a candidate driver of tumor progression
topic Molecular Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7027554/
https://www.ncbi.nlm.nih.gov/pubmed/31411736
http://dx.doi.org/10.1002/ijc.32627
work_keys_str_mv AT komormalgorzataa molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT dewitmeike molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT vandenbergjose molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT martensdekempsanner molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT delisvandiemenpienm molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT bolijnannes molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT tijssenmarianne molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT schelfhorsttim molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT piersmasanderr molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT chiasserinidavide molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT sandersjoyce molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT rauschchristian molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT hoogstrateyouri molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT stubbsandrewp molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT dejongmark molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT jensterguido molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT carvalhobeatriz molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT meijergerrita molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT jimenezconnier molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT fijnemanremondja molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression
AT molecularcharacterizationofcolorectaladenomasrevealspofut1asacandidatedriveroftumorprogression