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杆状细胞发生由 mafba 驱动的 nrl 敲除斑马鱼模型中改变了感光细胞组成和进行性视网膜变性。

Rod genesis driven by mafba in an nrl knockout zebrafish model with altered photoreceptor composition and progressive retinal degeneration.

机构信息

Key Laboratory of Molecular Biophysics of Ministry of Education, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, P.R. China.

State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, The Innovative Academy of Seed Design, Hubei Hongshan Laboratory, Chinese Academy of Sciences, Wuhan, P.R. China.

出版信息

PLoS Genet. 2022 Mar 4;18(3):e1009841. doi: 10.1371/journal.pgen.1009841. eCollection 2022 Mar.

Abstract

Neural retina leucine zipper (NRL) is an essential gene for the fate determination and differentiation of the precursor cells into rod photoreceptors in mammals. Mutations in NRL are associated with the autosomal recessive enhanced S-cone syndrome and autosomal dominant retinitis pigmentosa. However, the exact role of Nrl in regulating the development and maintenance of photoreceptors in the zebrafish (Danio rerio), a popular animal model used for retinal degeneration and regeneration studies, has not been fully determined. In this study, we generated an nrl knockout zebrafish model via the CRISPR-Cas9 technology and observed a surprising phenotype characterized by a reduced number, but not the total loss, of rods and over-growth of green cones. We discovered two waves of rod genesis, nrl-dependent and -independent at the embryonic and post-embryonic stages, respectively, in zebrafish by monitoring the rod development. Through bulk and single-cell RNA sequencing, we characterized the gene expression profiles of the whole retina and each retinal cell type from the wild type and nrl knockout zebrafish. The over-growth of green cones and mis-expression of green-cone-specific genes in rods in nrl mutants suggested that there are rod/green-cone bipotent precursors, whose fate choice between rod versus green-cone is controlled by nrl. Besides, we identified the mafba gene as a novel regulator of the nrl-independent rod development, based on the cell-type-specific expression patterns and the retinal phenotype of nrl/mafba double-knockout zebrafish. Gene collinearity analysis revealed the evolutionary origin of mafba and suggested that the function of mafba in rod development is specific to modern fishes. Furthermore, the altered photoreceptor composition and abnormal gene expression in nrl mutants caused progressive retinal degeneration and subsequent regeneration. Accordingly, this study revealed a novel function of the mafba gene in rod development and established a working model for the developmental and regulatory mechanisms regarding the rod and green-cone photoreceptors in zebrafish.

摘要

神经视网膜亮氨酸拉链(NRL)是哺乳动物前体细胞向杆状光感受器命运决定和分化所必需的基因。NRL 的突变与常染色体隐性增强 S- cone 综合征和常染色体显性视网膜色素变性有关。然而,Nrl 在调节斑马鱼(Danio rerio)中光感受器的发育和维持中的确切作用,斑马鱼是用于视网膜变性和再生研究的流行动物模型,尚未完全确定。在这项研究中,我们通过 CRISPR-Cas9 技术生成了 nrl 敲除斑马鱼模型,并观察到一个令人惊讶的表型,其特征是杆状细胞数量减少,但不是完全缺失,并且绿色 cone 过度生长。我们通过监测杆状细胞的发育,发现斑马鱼中存在两种杆状细胞发生波,分别为 nrl 依赖性和非依赖性,分别发生在胚胎期和胚胎后期。通过批量和单细胞 RNA 测序,我们对来自野生型和 nrl 敲除斑马鱼的整个视网膜和每个视网膜细胞类型的基因表达谱进行了表征。nrl 突变体中绿色 cone 的过度生长和绿色 cone 特异性基因的错误表达表明存在杆状细胞/绿色 cone 双潜能前体细胞,其在杆状细胞与绿色 cone 之间的命运选择受 nrl 控制。此外,我们基于 mafba 基因在特定细胞类型中的表达模式和 nrl/mafba 双敲除斑马鱼的视网膜表型,将 mafba 基因鉴定为一种新型 nrl 非依赖性杆状细胞发育的调控因子。基因共线性分析揭示了 mafba 的进化起源,并表明 mafba 在杆状细胞发育中的功能是现代鱼类所特有的。此外,nrl 突变体中光感受器组成的改变和异常基因表达导致进行性视网膜变性和随后的再生。因此,本研究揭示了 mafba 基因在杆状细胞发育中的新功能,并建立了斑马鱼中杆状细胞和绿色 cone 光感受器发育和调控机制的工作模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85ee/8926279/d4cc47318c6b/pgen.1009841.g001.jpg

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