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A Novel Chromosomal Translocation Identified due to Complex Genetic Instability in iPSC Generated for Choroideremia

Induced pluripotent stem cells (iPSCs) have revolutionized the study of human diseases as they can renew indefinitely, undergo multi-lineage differentiation, and generate disease-specific models. However, the difficulty of working with iPSCs is that they are prone to genetic instability. Furthermore...

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Autores principales: Erkilic, Nejla, Gatinois, Vincent, Torriano, Simona, Bouret, Pauline, Sanjurjo-Soriano, Carla, De Luca, Valerie, Damodar, Krishna, Cereso, Nicolas, Puechberty, Jacques, Sanchez-Alcudia, Rocio, Hamel, Christian P., Ayuso, Carmen, Meunier, Isabelle, Pellestor, Franck, Kalatzis, Vasiliki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6770680/
https://www.ncbi.nlm.nih.gov/pubmed/31514470
http://dx.doi.org/10.3390/cells8091068
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author Erkilic, Nejla
Gatinois, Vincent
Torriano, Simona
Bouret, Pauline
Sanjurjo-Soriano, Carla
De Luca, Valerie
Damodar, Krishna
Cereso, Nicolas
Puechberty, Jacques
Sanchez-Alcudia, Rocio
Hamel, Christian P.
Ayuso, Carmen
Meunier, Isabelle
Pellestor, Franck
Kalatzis, Vasiliki
author_facet Erkilic, Nejla
Gatinois, Vincent
Torriano, Simona
Bouret, Pauline
Sanjurjo-Soriano, Carla
De Luca, Valerie
Damodar, Krishna
Cereso, Nicolas
Puechberty, Jacques
Sanchez-Alcudia, Rocio
Hamel, Christian P.
Ayuso, Carmen
Meunier, Isabelle
Pellestor, Franck
Kalatzis, Vasiliki
author_sort Erkilic, Nejla
collection PubMed
description Induced pluripotent stem cells (iPSCs) have revolutionized the study of human diseases as they can renew indefinitely, undergo multi-lineage differentiation, and generate disease-specific models. However, the difficulty of working with iPSCs is that they are prone to genetic instability. Furthermore, genetically unstable iPSCs are often discarded, as they can have unforeseen consequences on pathophysiological or therapeutic read-outs. We generated iPSCs from two brothers of a previously unstudied family affected with the inherited retinal dystrophy choroideremia. We detected complex rearrangements involving chromosomes 12, 20 and/or 5 in the generated iPSCs. Suspecting an underlying chromosomal aberration, we performed karyotype analysis of the original fibroblasts, and of blood cells from additional family members. We identified a novel chromosomal translocation t(12;20)(q24.3;q11.2) segregating in this family. We determined that the translocation was balanced and did not impact subsequent retinal differentiation. We show for the first time that an undetected genetic instability in somatic cells can breed further instability upon reprogramming. Therefore, the detection of chromosomal aberrations in iPSCs should not be disregarded, as they may reveal rearrangements segregating in families. Furthermore, as such rearrangements are often associated with reproductive failure or birth defects, this in turn has important consequences for genetic counseling of family members.
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spelling pubmed-67706802019-10-30 A Novel Chromosomal Translocation Identified due to Complex Genetic Instability in iPSC Generated for Choroideremia Erkilic, Nejla Gatinois, Vincent Torriano, Simona Bouret, Pauline Sanjurjo-Soriano, Carla De Luca, Valerie Damodar, Krishna Cereso, Nicolas Puechberty, Jacques Sanchez-Alcudia, Rocio Hamel, Christian P. Ayuso, Carmen Meunier, Isabelle Pellestor, Franck Kalatzis, Vasiliki Cells Article Induced pluripotent stem cells (iPSCs) have revolutionized the study of human diseases as they can renew indefinitely, undergo multi-lineage differentiation, and generate disease-specific models. However, the difficulty of working with iPSCs is that they are prone to genetic instability. Furthermore, genetically unstable iPSCs are often discarded, as they can have unforeseen consequences on pathophysiological or therapeutic read-outs. We generated iPSCs from two brothers of a previously unstudied family affected with the inherited retinal dystrophy choroideremia. We detected complex rearrangements involving chromosomes 12, 20 and/or 5 in the generated iPSCs. Suspecting an underlying chromosomal aberration, we performed karyotype analysis of the original fibroblasts, and of blood cells from additional family members. We identified a novel chromosomal translocation t(12;20)(q24.3;q11.2) segregating in this family. We determined that the translocation was balanced and did not impact subsequent retinal differentiation. We show for the first time that an undetected genetic instability in somatic cells can breed further instability upon reprogramming. Therefore, the detection of chromosomal aberrations in iPSCs should not be disregarded, as they may reveal rearrangements segregating in families. Furthermore, as such rearrangements are often associated with reproductive failure or birth defects, this in turn has important consequences for genetic counseling of family members. MDPI 2019-09-11 /pmc/articles/PMC6770680/ /pubmed/31514470 http://dx.doi.org/10.3390/cells8091068 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Erkilic, Nejla
Gatinois, Vincent
Torriano, Simona
Bouret, Pauline
Sanjurjo-Soriano, Carla
De Luca, Valerie
Damodar, Krishna
Cereso, Nicolas
Puechberty, Jacques
Sanchez-Alcudia, Rocio
Hamel, Christian P.
Ayuso, Carmen
Meunier, Isabelle
Pellestor, Franck
Kalatzis, Vasiliki
A Novel Chromosomal Translocation Identified due to Complex Genetic Instability in iPSC Generated for Choroideremia
title A Novel Chromosomal Translocation Identified due to Complex Genetic Instability in iPSC Generated for Choroideremia
title_full A Novel Chromosomal Translocation Identified due to Complex Genetic Instability in iPSC Generated for Choroideremia
title_fullStr A Novel Chromosomal Translocation Identified due to Complex Genetic Instability in iPSC Generated for Choroideremia
title_full_unstemmed A Novel Chromosomal Translocation Identified due to Complex Genetic Instability in iPSC Generated for Choroideremia
title_short A Novel Chromosomal Translocation Identified due to Complex Genetic Instability in iPSC Generated for Choroideremia
title_sort novel chromosomal translocation identified due to complex genetic instability in ipsc generated for choroideremia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6770680/
https://www.ncbi.nlm.nih.gov/pubmed/31514470
http://dx.doi.org/10.3390/cells8091068
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