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Her9/Hes4 对于视网膜光感受器的发育、维持和存活是必需的。

Her9/Hes4 is required for retinal photoreceptor development, maintenance, and survival.

机构信息

Department of Biology, University of Kentucky, 215 T.H. Morgan Building, Lexington, KY, 40506-0225, USA.

出版信息

Sci Rep. 2020 Jul 9;10(1):11316. doi: 10.1038/s41598-020-68172-2.

Abstract

The intrinsic and extrinsic factors that regulate vertebrate photoreceptor specification and differentiation are complex, and our understanding of all the players is far from complete. Her9, the zebrafish ortholog of human HES4, is a basic helix-loop-helix-orange transcriptional repressor that regulates neurogenesis in several developmental contexts. We have previously shown that her9 is upregulated during chronic rod photoreceptor degeneration and regeneration in adult zebrafish, but little is known about the role of her9 during retinal development. To better understand the function of Her9 in the retina, we generated zebrafish her9 CRISPR mutants. Her9 homozygous mutants displayed striking retinal phenotypes, including decreased numbers of rods and red/green cones, whereas blue and UV cones were relatively unaffected. The reduction in rods and red/green cones correlated with defects in photoreceptor subtype lineage specification. The remaining rods and double cones displayed abnormal outer segments, and elevated levels of apoptosis. In addition to the photoreceptor defects, her9 mutants also possessed a reduced proliferative ciliary marginal zone, and decreased and disorganized Müller glia. Mutation of her9 was larval lethal, with no mutants surviving past 13 days post fertilization. Our results reveal a previously undescribed role for Her9/Hes4 in photoreceptor differentiation, maintenance, and survival.

摘要

调节脊椎动物光感受器特化和分化的内在和外在因素很复杂,我们对所有参与者的了解还远远不够。Her9 是人类 HES4 的斑马鱼同源物,是一种基本螺旋-环-螺旋-橙色转录抑制因子,在几种发育背景下调节神经发生。我们之前已经表明,在成年斑马鱼慢性杆状光感受器变性和再生过程中,her9 上调,但对其在视网膜发育过程中的作用知之甚少。为了更好地理解 Her9 在视网膜中的功能,我们生成了斑马鱼 her9 CRISPR 突变体。Her9 纯合突变体表现出明显的视网膜表型,包括杆状细胞和红/绿视锥细胞数量减少,而蓝和 UV 视锥细胞相对不受影响。杆状细胞和红/绿视锥细胞的减少与光感受器亚型谱系特化的缺陷相关。剩余的杆状细胞和双锥细胞显示出异常的外节,凋亡水平升高。除了光感受器缺陷外,her9 突变体还具有减少的增殖性纤毛边缘区,以及减少和紊乱的 Müller 胶质细胞。her9 突变是幼虫致死性的,没有突变体在受精后 13 天以上存活。我们的结果揭示了 Her9/Hes4 在光感受器分化、维持和存活中的一个以前未描述的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c544/7347560/e418275fe94d/41598_2020_68172_Fig1_HTML.jpg

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