Cargando…

Reprogramming astrocytes to motor neurons by activation of endogenous Ngn2 and Isl1

Central nervous system injury and neurodegenerative diseases cause irreversible loss of neurons. Overexpression of exogenous specific transcription factors can reprogram somatic cells into functional neurons for regeneration and functional reconstruction. However, these practices are potentially pro...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhou, Meiling, Tao, Xiaoqing, Sui, Ming, Cui, Mengge, Liu, Dan, Wang, Beibei, Wang, Ting, Zheng, Yunjie, Luo, Juan, Mu, Yangling, Wan, Feng, Zhu, Ling-Qiang, Zhang, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8282467/
https://www.ncbi.nlm.nih.gov/pubmed/34171285
http://dx.doi.org/10.1016/j.stemcr.2021.05.020
_version_ 1783723020131500032
author Zhou, Meiling
Tao, Xiaoqing
Sui, Ming
Cui, Mengge
Liu, Dan
Wang, Beibei
Wang, Ting
Zheng, Yunjie
Luo, Juan
Mu, Yangling
Wan, Feng
Zhu, Ling-Qiang
Zhang, Bin
author_facet Zhou, Meiling
Tao, Xiaoqing
Sui, Ming
Cui, Mengge
Liu, Dan
Wang, Beibei
Wang, Ting
Zheng, Yunjie
Luo, Juan
Mu, Yangling
Wan, Feng
Zhu, Ling-Qiang
Zhang, Bin
author_sort Zhou, Meiling
collection PubMed
description Central nervous system injury and neurodegenerative diseases cause irreversible loss of neurons. Overexpression of exogenous specific transcription factors can reprogram somatic cells into functional neurons for regeneration and functional reconstruction. However, these practices are potentially problematic due to the integration of vectors into the host genome. Here, we showed that the activation of endogenous genes Ngn2 and Isl1 by CRISPRa enabled reprogramming of mouse spinal astrocytes and embryonic fibroblasts to motor neurons. These induced neurons showed motor neuronal morphology and exhibited electrophysiological activities. Furthermore, astrocytes in the spinal cord of the adult mouse can be converted into motor neurons by this approach with high efficiency. These results demonstrate that the activation of endogenous genes is sufficient to induce astrocytes into functional motor neurons in vitro and in vivo. This direct neuronal reprogramming approach may provide a novel potential therapeutic strategy for treating neurodegenerative diseases and spinal cord injury.
format Online
Article
Text
id pubmed-8282467
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-82824672021-07-21 Reprogramming astrocytes to motor neurons by activation of endogenous Ngn2 and Isl1 Zhou, Meiling Tao, Xiaoqing Sui, Ming Cui, Mengge Liu, Dan Wang, Beibei Wang, Ting Zheng, Yunjie Luo, Juan Mu, Yangling Wan, Feng Zhu, Ling-Qiang Zhang, Bin Stem Cell Reports Article Central nervous system injury and neurodegenerative diseases cause irreversible loss of neurons. Overexpression of exogenous specific transcription factors can reprogram somatic cells into functional neurons for regeneration and functional reconstruction. However, these practices are potentially problematic due to the integration of vectors into the host genome. Here, we showed that the activation of endogenous genes Ngn2 and Isl1 by CRISPRa enabled reprogramming of mouse spinal astrocytes and embryonic fibroblasts to motor neurons. These induced neurons showed motor neuronal morphology and exhibited electrophysiological activities. Furthermore, astrocytes in the spinal cord of the adult mouse can be converted into motor neurons by this approach with high efficiency. These results demonstrate that the activation of endogenous genes is sufficient to induce astrocytes into functional motor neurons in vitro and in vivo. This direct neuronal reprogramming approach may provide a novel potential therapeutic strategy for treating neurodegenerative diseases and spinal cord injury. Elsevier 2021-06-24 /pmc/articles/PMC8282467/ /pubmed/34171285 http://dx.doi.org/10.1016/j.stemcr.2021.05.020 Text en © 2021 The Authors https://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 Article
Zhou, Meiling
Tao, Xiaoqing
Sui, Ming
Cui, Mengge
Liu, Dan
Wang, Beibei
Wang, Ting
Zheng, Yunjie
Luo, Juan
Mu, Yangling
Wan, Feng
Zhu, Ling-Qiang
Zhang, Bin
Reprogramming astrocytes to motor neurons by activation of endogenous Ngn2 and Isl1
title Reprogramming astrocytes to motor neurons by activation of endogenous Ngn2 and Isl1
title_full Reprogramming astrocytes to motor neurons by activation of endogenous Ngn2 and Isl1
title_fullStr Reprogramming astrocytes to motor neurons by activation of endogenous Ngn2 and Isl1
title_full_unstemmed Reprogramming astrocytes to motor neurons by activation of endogenous Ngn2 and Isl1
title_short Reprogramming astrocytes to motor neurons by activation of endogenous Ngn2 and Isl1
title_sort reprogramming astrocytes to motor neurons by activation of endogenous ngn2 and isl1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8282467/
https://www.ncbi.nlm.nih.gov/pubmed/34171285
http://dx.doi.org/10.1016/j.stemcr.2021.05.020
work_keys_str_mv AT zhoumeiling reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1
AT taoxiaoqing reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1
AT suiming reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1
AT cuimengge reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1
AT liudan reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1
AT wangbeibei reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1
AT wangting reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1
AT zhengyunjie reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1
AT luojuan reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1
AT muyangling reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1
AT wanfeng reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1
AT zhulingqiang reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1
AT zhangbin reprogrammingastrocytestomotorneuronsbyactivationofendogenousngn2andisl1