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E2A ablation enhances proportion of nodal-like cardiomyocytes in cardiac-specific differentiation of human embryonic stem cells

BACKGROUND: Human sinoatrial cardiomyocytes are essential building blocks for cell therapies of conduction system disorders. However, current differentiation protocols for deriving nodal cardiomyocytes from human pluripotent stem cells (hPSCs) are very inefficient. METHODS: By employing the hPSCs to...

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Autores principales: Li, Xiuya, Gao, Fei, Wang, Xiaochen, Liang, Qianqian, Bai, Aobing, Liu, Zhuo, Chen, Xinyun, Li, Ermin, Chen, Sifeng, Lu, Chao, Qian, Ruizhe, Sun, Ning, Liang, Ping, Xu, Chen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8426208/
https://www.ncbi.nlm.nih.gov/pubmed/34488017
http://dx.doi.org/10.1016/j.ebiom.2021.103575
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author Li, Xiuya
Gao, Fei
Wang, Xiaochen
Liang, Qianqian
Bai, Aobing
Liu, Zhuo
Chen, Xinyun
Li, Ermin
Chen, Sifeng
Lu, Chao
Qian, Ruizhe
Sun, Ning
Liang, Ping
Xu, Chen
author_facet Li, Xiuya
Gao, Fei
Wang, Xiaochen
Liang, Qianqian
Bai, Aobing
Liu, Zhuo
Chen, Xinyun
Li, Ermin
Chen, Sifeng
Lu, Chao
Qian, Ruizhe
Sun, Ning
Liang, Ping
Xu, Chen
author_sort Li, Xiuya
collection PubMed
description BACKGROUND: Human sinoatrial cardiomyocytes are essential building blocks for cell therapies of conduction system disorders. However, current differentiation protocols for deriving nodal cardiomyocytes from human pluripotent stem cells (hPSCs) are very inefficient. METHODS: By employing the hPSCs to cardiomyocyte (CM) in vitro differentiation system and generating E2A-knockout hESCs using CRISPR/Cas9 gene editing technology, we analyze the functions of E2A in CM differentiation. FINDINGS: We found that knockout of the transcription factor E2A substantially increased the proportion of nodal-like cells in hESC-derived CMs. The E2A ablated CMs displayed smaller cell size, increased beating rates, weaker contractile force, and other functional characteristics similar to sinoatrial node (SAN) cells. Transcriptomic analyses indicated that ion channel-encoding genes were up-regulated in E2A ablated CMs. E2A directly bounded to the promoters of genes key to SAN development via conserved E-box motif, and promoted their expression. Unexpect enhanced activity of NOTCH pathway after E2A ablation could also facilate to induct ventricle workingtype CMs reprogramming into SAN-like cells. INTERPRETATION: Our study revealed a new role for E2A during directed cardiac differentiation of hESCs and may provide new clues for enhancing induction efficiency of SAN-like cardiomyocytes from hPSCs in the future. FUNDING: This work was supported by the NSFC (No.82070391, N.S.; No.81870175 and 81922006, P.L.), the National Key R&D Program of China (2018YFC2000202, N.S.; 2017YFA0103700, P.L.), the Haiju program of National Children's Medical Center EK1125180102, and Innovative research team of high-level local universities in Shanghai and a key laboratory program of the Education Commission of Shanghai Municipality (ZDSYS14005).
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spelling pubmed-84262082021-09-13 E2A ablation enhances proportion of nodal-like cardiomyocytes in cardiac-specific differentiation of human embryonic stem cells Li, Xiuya Gao, Fei Wang, Xiaochen Liang, Qianqian Bai, Aobing Liu, Zhuo Chen, Xinyun Li, Ermin Chen, Sifeng Lu, Chao Qian, Ruizhe Sun, Ning Liang, Ping Xu, Chen EBioMedicine Research Paper BACKGROUND: Human sinoatrial cardiomyocytes are essential building blocks for cell therapies of conduction system disorders. However, current differentiation protocols for deriving nodal cardiomyocytes from human pluripotent stem cells (hPSCs) are very inefficient. METHODS: By employing the hPSCs to cardiomyocyte (CM) in vitro differentiation system and generating E2A-knockout hESCs using CRISPR/Cas9 gene editing technology, we analyze the functions of E2A in CM differentiation. FINDINGS: We found that knockout of the transcription factor E2A substantially increased the proportion of nodal-like cells in hESC-derived CMs. The E2A ablated CMs displayed smaller cell size, increased beating rates, weaker contractile force, and other functional characteristics similar to sinoatrial node (SAN) cells. Transcriptomic analyses indicated that ion channel-encoding genes were up-regulated in E2A ablated CMs. E2A directly bounded to the promoters of genes key to SAN development via conserved E-box motif, and promoted their expression. Unexpect enhanced activity of NOTCH pathway after E2A ablation could also facilate to induct ventricle workingtype CMs reprogramming into SAN-like cells. INTERPRETATION: Our study revealed a new role for E2A during directed cardiac differentiation of hESCs and may provide new clues for enhancing induction efficiency of SAN-like cardiomyocytes from hPSCs in the future. FUNDING: This work was supported by the NSFC (No.82070391, N.S.; No.81870175 and 81922006, P.L.), the National Key R&D Program of China (2018YFC2000202, N.S.; 2017YFA0103700, P.L.), the Haiju program of National Children's Medical Center EK1125180102, and Innovative research team of high-level local universities in Shanghai and a key laboratory program of the Education Commission of Shanghai Municipality (ZDSYS14005). Elsevier 2021-09-03 /pmc/articles/PMC8426208/ /pubmed/34488017 http://dx.doi.org/10.1016/j.ebiom.2021.103575 Text en © 2021 The Author(s) 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 Research Paper
Li, Xiuya
Gao, Fei
Wang, Xiaochen
Liang, Qianqian
Bai, Aobing
Liu, Zhuo
Chen, Xinyun
Li, Ermin
Chen, Sifeng
Lu, Chao
Qian, Ruizhe
Sun, Ning
Liang, Ping
Xu, Chen
E2A ablation enhances proportion of nodal-like cardiomyocytes in cardiac-specific differentiation of human embryonic stem cells
title E2A ablation enhances proportion of nodal-like cardiomyocytes in cardiac-specific differentiation of human embryonic stem cells
title_full E2A ablation enhances proportion of nodal-like cardiomyocytes in cardiac-specific differentiation of human embryonic stem cells
title_fullStr E2A ablation enhances proportion of nodal-like cardiomyocytes in cardiac-specific differentiation of human embryonic stem cells
title_full_unstemmed E2A ablation enhances proportion of nodal-like cardiomyocytes in cardiac-specific differentiation of human embryonic stem cells
title_short E2A ablation enhances proportion of nodal-like cardiomyocytes in cardiac-specific differentiation of human embryonic stem cells
title_sort e2a ablation enhances proportion of nodal-like cardiomyocytes in cardiac-specific differentiation of human embryonic stem cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8426208/
https://www.ncbi.nlm.nih.gov/pubmed/34488017
http://dx.doi.org/10.1016/j.ebiom.2021.103575
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