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Modeling APC mutagenesis and familial adenomatous polyposis using human iPS cells

Mutations in the gene Adenomatous Polyposis Coli or APC appear in most sporadic cases of colorectal cancer and it is the most frequent mutation causing hereditary Familial Adenomatous Polyposis. The detailed molecular mechanism by which APC mutations predispose to the development of colorectal cance...

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Autores principales: Sommer, Cesar A., Capilla, Amalia, Molina-Estevez, Francisco J., Gianotti-Sommer, Andreia, Skvir, Nicholas, Caballero, Ignacio, Chowdhury, Sanjib, Mostoslavsky, Gustavo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6053155/
https://www.ncbi.nlm.nih.gov/pubmed/30024920
http://dx.doi.org/10.1371/journal.pone.0200657
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author Sommer, Cesar A.
Capilla, Amalia
Molina-Estevez, Francisco J.
Gianotti-Sommer, Andreia
Skvir, Nicholas
Caballero, Ignacio
Chowdhury, Sanjib
Mostoslavsky, Gustavo
author_facet Sommer, Cesar A.
Capilla, Amalia
Molina-Estevez, Francisco J.
Gianotti-Sommer, Andreia
Skvir, Nicholas
Caballero, Ignacio
Chowdhury, Sanjib
Mostoslavsky, Gustavo
author_sort Sommer, Cesar A.
collection PubMed
description Mutations in the gene Adenomatous Polyposis Coli or APC appear in most sporadic cases of colorectal cancer and it is the most frequent mutation causing hereditary Familial Adenomatous Polyposis. The detailed molecular mechanism by which APC mutations predispose to the development of colorectal cancer is not completely understood. This is in part due to the lack of accessibility to appropriate models that recapitulate the early events associated with APC mediated intestinal transformation. We have established a novel platform utilizing human induced Pluripotent Stem cells or iPSC from normal or FAP-specific APC mutant individuals and evaluated the effect of the mutation in the cells before and after differentiation into intestinal organoids. In order to minimize genetic background effects, we also established an isogenic platform using TALEN-mediated gene editing. Comparison of normal and APC mutant iPSC revealed a significant defect in cell identity and polarity due to the presence of APC in heterozygosity as well as chromosomal aberrations including abnormal anaphases and centrosome numbers. Importantly, upon specification into intestinal progeny, APC heterozygosity was responsible for a major change in the transcriptional identity of the cells with dysregulation of key signaling pathways, including metabolic reprogramming, abnormal lipid metabolism and intestinal-specific cadherin expression. In conclusion, we have developed a novel iPSC/intestinal model of APC mutagenesis and provide strong evidence that APC in heterozygosity imparts a clear phenotypic and molecular defect, affecting basic cellular functions and integrity, providing novel insights in the earlier events of APC-mediated tumorigenesis.
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spelling pubmed-60531552018-07-27 Modeling APC mutagenesis and familial adenomatous polyposis using human iPS cells Sommer, Cesar A. Capilla, Amalia Molina-Estevez, Francisco J. Gianotti-Sommer, Andreia Skvir, Nicholas Caballero, Ignacio Chowdhury, Sanjib Mostoslavsky, Gustavo PLoS One Research Article Mutations in the gene Adenomatous Polyposis Coli or APC appear in most sporadic cases of colorectal cancer and it is the most frequent mutation causing hereditary Familial Adenomatous Polyposis. The detailed molecular mechanism by which APC mutations predispose to the development of colorectal cancer is not completely understood. This is in part due to the lack of accessibility to appropriate models that recapitulate the early events associated with APC mediated intestinal transformation. We have established a novel platform utilizing human induced Pluripotent Stem cells or iPSC from normal or FAP-specific APC mutant individuals and evaluated the effect of the mutation in the cells before and after differentiation into intestinal organoids. In order to minimize genetic background effects, we also established an isogenic platform using TALEN-mediated gene editing. Comparison of normal and APC mutant iPSC revealed a significant defect in cell identity and polarity due to the presence of APC in heterozygosity as well as chromosomal aberrations including abnormal anaphases and centrosome numbers. Importantly, upon specification into intestinal progeny, APC heterozygosity was responsible for a major change in the transcriptional identity of the cells with dysregulation of key signaling pathways, including metabolic reprogramming, abnormal lipid metabolism and intestinal-specific cadherin expression. In conclusion, we have developed a novel iPSC/intestinal model of APC mutagenesis and provide strong evidence that APC in heterozygosity imparts a clear phenotypic and molecular defect, affecting basic cellular functions and integrity, providing novel insights in the earlier events of APC-mediated tumorigenesis. Public Library of Science 2018-07-19 /pmc/articles/PMC6053155/ /pubmed/30024920 http://dx.doi.org/10.1371/journal.pone.0200657 Text en © 2018 Sommer et al http://creativecommons.org/licenses/by/4.0/ 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 author and source are credited.
spellingShingle Research Article
Sommer, Cesar A.
Capilla, Amalia
Molina-Estevez, Francisco J.
Gianotti-Sommer, Andreia
Skvir, Nicholas
Caballero, Ignacio
Chowdhury, Sanjib
Mostoslavsky, Gustavo
Modeling APC mutagenesis and familial adenomatous polyposis using human iPS cells
title Modeling APC mutagenesis and familial adenomatous polyposis using human iPS cells
title_full Modeling APC mutagenesis and familial adenomatous polyposis using human iPS cells
title_fullStr Modeling APC mutagenesis and familial adenomatous polyposis using human iPS cells
title_full_unstemmed Modeling APC mutagenesis and familial adenomatous polyposis using human iPS cells
title_short Modeling APC mutagenesis and familial adenomatous polyposis using human iPS cells
title_sort modeling apc mutagenesis and familial adenomatous polyposis using human ips cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6053155/
https://www.ncbi.nlm.nih.gov/pubmed/30024920
http://dx.doi.org/10.1371/journal.pone.0200657
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