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Integrative Single‐Cell Transcriptomics and Epigenomics Mapping of the Fetal Retina Developmental Dynamics

The underlying mechanisms that determine gene expression and chromatin accessibility in retinogenesis are poorly understood. Herein, single‐cell RNA sequencing and single‐cell assay for transposase‐accessible chromatin sequencing are performed on human embryonic eye samples obtained 9–26 weeks after...

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Autores principales: Li, Ruonan, Liu, Jiangyi, Yi, Ping, Yang, Xianli, Chen, Jun, Zhao, Chenyang, Liao, Xingyun, Wang, Xiaotang, Xu, Zongren, Lu, Huiping, Li, Hongshun, Zhang, Zhi, Liu, Xianyang, Xiang, Junjie, Hu, Ke, Qi, Hongbo, Yu, Jia, Yang, Peizeng, Hou, Shengping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238188/
https://www.ncbi.nlm.nih.gov/pubmed/37017569
http://dx.doi.org/10.1002/advs.202206623
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author Li, Ruonan
Liu, Jiangyi
Yi, Ping
Yang, Xianli
Chen, Jun
Zhao, Chenyang
Liao, Xingyun
Wang, Xiaotang
Xu, Zongren
Lu, Huiping
Li, Hongshun
Zhang, Zhi
Liu, Xianyang
Xiang, Junjie
Hu, Ke
Qi, Hongbo
Yu, Jia
Yang, Peizeng
Hou, Shengping
author_facet Li, Ruonan
Liu, Jiangyi
Yi, Ping
Yang, Xianli
Chen, Jun
Zhao, Chenyang
Liao, Xingyun
Wang, Xiaotang
Xu, Zongren
Lu, Huiping
Li, Hongshun
Zhang, Zhi
Liu, Xianyang
Xiang, Junjie
Hu, Ke
Qi, Hongbo
Yu, Jia
Yang, Peizeng
Hou, Shengping
author_sort Li, Ruonan
collection PubMed
description The underlying mechanisms that determine gene expression and chromatin accessibility in retinogenesis are poorly understood. Herein, single‐cell RNA sequencing and single‐cell assay for transposase‐accessible chromatin sequencing are performed on human embryonic eye samples obtained 9–26 weeks after conception to explore the heterogeneity of retinal progenitor cells (RPCs) and neurogenic RPCs. The differentiation trajectory from RPCs to 7 major types of retinal cells are verified. Subsequently, diverse lineage‐determining transcription factors are identified and their gene regulatory networks are refined at the transcriptomic and epigenomic levels. Treatment of retinospheres, with the inhibitor of RE1 silencing transcription factor, X5050, induces more neurogenesis with the regular arrangement, and a decrease in Müller glial cells. The signatures of major retinal cells and their correlation with pathogenic genes associated with multiple ocular diseases, including uveitis and age‐related macular degeneration are also described. A framework for the integrated exploration of single‐cell developmental dynamics of the human primary retina is provided.
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spelling pubmed-102381882023-06-04 Integrative Single‐Cell Transcriptomics and Epigenomics Mapping of the Fetal Retina Developmental Dynamics Li, Ruonan Liu, Jiangyi Yi, Ping Yang, Xianli Chen, Jun Zhao, Chenyang Liao, Xingyun Wang, Xiaotang Xu, Zongren Lu, Huiping Li, Hongshun Zhang, Zhi Liu, Xianyang Xiang, Junjie Hu, Ke Qi, Hongbo Yu, Jia Yang, Peizeng Hou, Shengping Adv Sci (Weinh) Research Articles The underlying mechanisms that determine gene expression and chromatin accessibility in retinogenesis are poorly understood. Herein, single‐cell RNA sequencing and single‐cell assay for transposase‐accessible chromatin sequencing are performed on human embryonic eye samples obtained 9–26 weeks after conception to explore the heterogeneity of retinal progenitor cells (RPCs) and neurogenic RPCs. The differentiation trajectory from RPCs to 7 major types of retinal cells are verified. Subsequently, diverse lineage‐determining transcription factors are identified and their gene regulatory networks are refined at the transcriptomic and epigenomic levels. Treatment of retinospheres, with the inhibitor of RE1 silencing transcription factor, X5050, induces more neurogenesis with the regular arrangement, and a decrease in Müller glial cells. The signatures of major retinal cells and their correlation with pathogenic genes associated with multiple ocular diseases, including uveitis and age‐related macular degeneration are also described. A framework for the integrated exploration of single‐cell developmental dynamics of the human primary retina is provided. John Wiley and Sons Inc. 2023-04-05 /pmc/articles/PMC10238188/ /pubmed/37017569 http://dx.doi.org/10.1002/advs.202206623 Text en © 2023 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Li, Ruonan
Liu, Jiangyi
Yi, Ping
Yang, Xianli
Chen, Jun
Zhao, Chenyang
Liao, Xingyun
Wang, Xiaotang
Xu, Zongren
Lu, Huiping
Li, Hongshun
Zhang, Zhi
Liu, Xianyang
Xiang, Junjie
Hu, Ke
Qi, Hongbo
Yu, Jia
Yang, Peizeng
Hou, Shengping
Integrative Single‐Cell Transcriptomics and Epigenomics Mapping of the Fetal Retina Developmental Dynamics
title Integrative Single‐Cell Transcriptomics and Epigenomics Mapping of the Fetal Retina Developmental Dynamics
title_full Integrative Single‐Cell Transcriptomics and Epigenomics Mapping of the Fetal Retina Developmental Dynamics
title_fullStr Integrative Single‐Cell Transcriptomics and Epigenomics Mapping of the Fetal Retina Developmental Dynamics
title_full_unstemmed Integrative Single‐Cell Transcriptomics and Epigenomics Mapping of the Fetal Retina Developmental Dynamics
title_short Integrative Single‐Cell Transcriptomics and Epigenomics Mapping of the Fetal Retina Developmental Dynamics
title_sort integrative single‐cell transcriptomics and epigenomics mapping of the fetal retina developmental dynamics
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238188/
https://www.ncbi.nlm.nih.gov/pubmed/37017569
http://dx.doi.org/10.1002/advs.202206623
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