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在人多能干细胞中生成视锥光感受器特异性GNGT2报告基因系。

Generation of a Cone Photoreceptor-specific GNGT2 Reporter Line in Human Pluripotent Stem Cells.

作者信息

Nazlamova Liliya, Cassidy Emma-Jane, Sowden Jane C, Lotery Andrew, Lakowski Jörn

机构信息

Clinical and Experimental Sciences, Faculty of Medicine, University of Southampton, Southampton, UK.

Wessex Regional Genetics Laboratory, Salisbury District Hospital, Salisbury, UK.

出版信息

Stem Cells. 2022 Mar 16;40(2):190-203. doi: 10.1093/stmcls/sxab015.

Abstract

Fluorescent reporter lines generated in human pluripotent stem cells are a highly useful tool to track, isolate, and analyze cell types and lineages in live cultures. Here, we generate the first human cone photoreceptor reporter cell line by CRISPR/Cas9 genome editing of a human embryonic stem cell (hESC) line to tag both alleles of the Guanine nucleotide-binding protein subunit gamma-T2 (GNGT2) gene with a mCherry reporter cassette. Three-dimensional optic vesicle-like structures were produced to verify reporter fidelity and track cones throughout their development in culture. The GNGT2-T2A-mCherry hESC line faithfully and robustly labels GNGT2-expressing cones throughout the entirety of their differentiation in vitro, recapitulating normal fetal expression of this gene. Our observations indicate that human cones undergo significant migratory activity during the course of differentiation in vitro. Consistent with this, our analysis of human fetal retinae from different stages of development finds positional differences of the cone population depending on their state of maturation. This novel reporter line will provide a useful tool for investigating human cone development and disease.

摘要

在人类多能干细胞中产生的荧光报告基因系是一种非常有用的工具,可用于追踪、分离和分析活细胞培养物中的细胞类型和谱系。在此,我们通过对人类胚胎干细胞(hESC)系进行CRISPR/Cas9基因组编辑,生成了首个人类视锥光感受器报告细胞系,用一个mCherry报告盒标记鸟嘌呤核苷酸结合蛋白亚基γ-T2(GNGT2)基因的两个等位基因。我们构建了三维视泡样结构,以验证报告基因的保真度,并在培养过程中追踪视锥细胞的整个发育过程。GNGT2-T2A-mCherry hESC系在体外整个分化过程中忠实地、强有力地标记表达GNGT2的视锥细胞,重现了该基因在正常胎儿中的表达情况。我们的观察结果表明,人类视锥细胞在体外分化过程中经历了显著的迁移活动。与此一致的是,我们对不同发育阶段的人类胎儿视网膜进行分析,发现视锥细胞群体的位置差异取决于它们的成熟状态。这个新的报告基因系将为研究人类视锥细胞发育和疾病提供一个有用的工具。

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