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Notch 信号通过调节胚胎后期生长过程中的 来影响视网膜的组成。

Notch signalling patterns retinal composition by regulating during post-embryonic growth.

机构信息

Centre for Organismal Studies, Heidelberg University, Heidelberg 69120, Germany.

Heidelberg Biosciences International Graduate School (HBIGS), Heidelberg 69120, Germany.

出版信息

Development. 2018 Nov 9;145(21):dev169698. doi: 10.1242/dev.169698.

DOI:10.1242/dev.169698
PMID:30337377
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6240314/
Abstract

Patterning of a continuously growing naive field in the context of a life-long growing organ such as the teleost eye is of high functional relevance. Intrinsic and extrinsic signals have been proposed to regulate lineage specification in progenitors that exit the stem cell niche in the ciliary marginal zone (CMZ). The proper cell-type composition arising from those progenitors is a prerequisite for retinal function. Our findings in the teleost medaka () uncover that the Notch-Atoh7 axis continuously patterns the CMZ. The complement of cell types originating from the two juxtaposed progenitors marked by Notch or Atoh7 activity contains all constituents of a retinal column. Modulation of Notch signalling specifically in Atoh7-expressing cells demonstrates the crucial role of this axis in generating the correct cell-type proportions. After transiently blocking Notch signalling, retinal patterning and differentiation is re-initiated Taken together, our data show that Notch activity in the CMZ continuously structures the growing retina by juxtaposing Notch and Atoh7 progenitors that give rise to distinct complementary lineages, revealing coupling of patterning and cell-type specification in the respective lineages.

摘要

在鱼类眼睛等终身生长的器官中,连续生长的原始区域的模式形成具有重要的功能相关性。内在和外在信号被提出用于调节从纤毛边缘区(CMZ)中的干细胞龛中退出的祖细胞中的谱系特化。这些祖细胞产生的适当的细胞类型组成是视网膜功能的前提。我们在硬骨鱼斑马鱼中的发现揭示了 Notch-Atoh7 轴连续模式化 CMZ。由 Notch 或 Atoh7 活性标记的两个相邻祖细胞产生的细胞类型的组合包含视网膜柱的所有成分。特异性在 Atoh7 表达细胞中调节 Notch 信号表明该轴在产生正确的细胞类型比例方面的关键作用。在短暂阻断 Notch 信号后,视网膜的模式形成和分化会重新开始。

综上所述,我们的数据表明,CMZ 中的 Notch 活性通过并列产生不同互补谱系的 Notch 和 Atoh7 祖细胞来连续构建生长中的视网膜,揭示了各自谱系中模式形成和细胞类型特化的耦合。

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Self-organized Notch dynamics generate stereotyped sensory organ patterns in .
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