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Decreased neural precursor cell pool in NADPH oxidase 2-deficiency: From mouse brain to neural differentiation of patient derived iPSC

There is emerging evidence for the involvement of reactive oxygen species (ROS) in the regulation of stem cells and cellular differentiation. Absence of the ROS-generating NADPH oxidase NOX2 in chronic granulomatous disease (CGD) patients, predominantly manifests as immune deficiency, but has also b...

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Autores principales: Nayernia, Zeynab, Colaianna, Marilena, Robledinos-Antón, Natalia, Gutzwiller, Eveline, Sloan-Béna, Frédérique, Stathaki, Elisavet, Hibaoui, Yousef, Cuadrado, Antonio, Hescheler, Jürgen, Stasia, Marie-José, Saric, Tomo, Jaquet, Vincent, Krause, Karl-Heinz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5454143/
https://www.ncbi.nlm.nih.gov/pubmed/28575744
http://dx.doi.org/10.1016/j.redox.2017.04.026
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author Nayernia, Zeynab
Colaianna, Marilena
Robledinos-Antón, Natalia
Gutzwiller, Eveline
Sloan-Béna, Frédérique
Stathaki, Elisavet
Hibaoui, Yousef
Cuadrado, Antonio
Hescheler, Jürgen
Stasia, Marie-José
Saric, Tomo
Jaquet, Vincent
Krause, Karl-Heinz
author_facet Nayernia, Zeynab
Colaianna, Marilena
Robledinos-Antón, Natalia
Gutzwiller, Eveline
Sloan-Béna, Frédérique
Stathaki, Elisavet
Hibaoui, Yousef
Cuadrado, Antonio
Hescheler, Jürgen
Stasia, Marie-José
Saric, Tomo
Jaquet, Vincent
Krause, Karl-Heinz
author_sort Nayernia, Zeynab
collection PubMed
description There is emerging evidence for the involvement of reactive oxygen species (ROS) in the regulation of stem cells and cellular differentiation. Absence of the ROS-generating NADPH oxidase NOX2 in chronic granulomatous disease (CGD) patients, predominantly manifests as immune deficiency, but has also been associated with decreased cognition. Here, we investigate the role of NOX enzymes in neuronal homeostasis in adult mouse brain and in neural cells derived from human induced pluripotent stem cells (iPSC). High levels of NOX2 were found in mouse adult neurogenic regions. In NOX2-deficient mice, neurogenic regions showed diminished redox modifications, as well as decrease in neuroprecursor numbers and in expression of genes involved in neural differentiation including NES, BDNF and OTX2. iPSC from healthy subjects and patients with CGD were used to study the role of NOX2 in human in vitro neuronal development. Expression of NOX2 was low in undifferentiated iPSC, upregulated upon neural induction, and disappeared during neuronal differentiation. In human neurospheres, NOX2 protein and ROS generation were polarized within the inner cell layer of rosette structures. NOX2 deficiency in CGD-iPSCs resulted in an abnormal neural induction in vitro, as revealed by a reduced expression of neuroprogenitor markers (NES, BDNF, OTX2, NRSF/REST), and a decreased generation of mature neurons. Vector-mediated NOX2 expression in NOX2-deficient iPSCs rescued neurogenesis. Taken together, our study provides novel evidence for a regulatory role of NOX2 during early stages of neurogenesis in mouse and human.
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spelling pubmed-54541432017-06-09 Decreased neural precursor cell pool in NADPH oxidase 2-deficiency: From mouse brain to neural differentiation of patient derived iPSC Nayernia, Zeynab Colaianna, Marilena Robledinos-Antón, Natalia Gutzwiller, Eveline Sloan-Béna, Frédérique Stathaki, Elisavet Hibaoui, Yousef Cuadrado, Antonio Hescheler, Jürgen Stasia, Marie-José Saric, Tomo Jaquet, Vincent Krause, Karl-Heinz Redox Biol Research Paper There is emerging evidence for the involvement of reactive oxygen species (ROS) in the regulation of stem cells and cellular differentiation. Absence of the ROS-generating NADPH oxidase NOX2 in chronic granulomatous disease (CGD) patients, predominantly manifests as immune deficiency, but has also been associated with decreased cognition. Here, we investigate the role of NOX enzymes in neuronal homeostasis in adult mouse brain and in neural cells derived from human induced pluripotent stem cells (iPSC). High levels of NOX2 were found in mouse adult neurogenic regions. In NOX2-deficient mice, neurogenic regions showed diminished redox modifications, as well as decrease in neuroprecursor numbers and in expression of genes involved in neural differentiation including NES, BDNF and OTX2. iPSC from healthy subjects and patients with CGD were used to study the role of NOX2 in human in vitro neuronal development. Expression of NOX2 was low in undifferentiated iPSC, upregulated upon neural induction, and disappeared during neuronal differentiation. In human neurospheres, NOX2 protein and ROS generation were polarized within the inner cell layer of rosette structures. NOX2 deficiency in CGD-iPSCs resulted in an abnormal neural induction in vitro, as revealed by a reduced expression of neuroprogenitor markers (NES, BDNF, OTX2, NRSF/REST), and a decreased generation of mature neurons. Vector-mediated NOX2 expression in NOX2-deficient iPSCs rescued neurogenesis. Taken together, our study provides novel evidence for a regulatory role of NOX2 during early stages of neurogenesis in mouse and human. Elsevier 2017-04-24 /pmc/articles/PMC5454143/ /pubmed/28575744 http://dx.doi.org/10.1016/j.redox.2017.04.026 Text en © 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Nayernia, Zeynab
Colaianna, Marilena
Robledinos-Antón, Natalia
Gutzwiller, Eveline
Sloan-Béna, Frédérique
Stathaki, Elisavet
Hibaoui, Yousef
Cuadrado, Antonio
Hescheler, Jürgen
Stasia, Marie-José
Saric, Tomo
Jaquet, Vincent
Krause, Karl-Heinz
Decreased neural precursor cell pool in NADPH oxidase 2-deficiency: From mouse brain to neural differentiation of patient derived iPSC
title Decreased neural precursor cell pool in NADPH oxidase 2-deficiency: From mouse brain to neural differentiation of patient derived iPSC
title_full Decreased neural precursor cell pool in NADPH oxidase 2-deficiency: From mouse brain to neural differentiation of patient derived iPSC
title_fullStr Decreased neural precursor cell pool in NADPH oxidase 2-deficiency: From mouse brain to neural differentiation of patient derived iPSC
title_full_unstemmed Decreased neural precursor cell pool in NADPH oxidase 2-deficiency: From mouse brain to neural differentiation of patient derived iPSC
title_short Decreased neural precursor cell pool in NADPH oxidase 2-deficiency: From mouse brain to neural differentiation of patient derived iPSC
title_sort decreased neural precursor cell pool in nadph oxidase 2-deficiency: from mouse brain to neural differentiation of patient derived ipsc
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5454143/
https://www.ncbi.nlm.nih.gov/pubmed/28575744
http://dx.doi.org/10.1016/j.redox.2017.04.026
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