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Notch 信号通路在远端小鼠视网膜中差异调节 Atoh7 和 Neurog2 的表达。

Notch signaling differentially regulates Atoh7 and Neurog2 in the distal mouse retina.

机构信息

Division of Developmental Biology, Cincinnati Children's Hospital Research Foundation, Cincinnati, OH 45229, USA.

Division of Developmental Biology, Cincinnati Children's Hospital Research Foundation, Cincinnati, OH 45229, USA Department of Cell Biology and Human Anatomy, University of California Davis, School of Medicine, Davis, CA 95616, USA

出版信息

Development. 2014 Aug;141(16):3243-54. doi: 10.1242/dev.106245.

Abstract

Notch signaling regulates basic helix-loop-helix (bHLH) factors as an evolutionarily conserved module, but the tissue-specific mechanisms are incompletely elucidated. In the mouse retina, bHLH genes Atoh7 and Neurog2 have distinct functions, with Atoh7 regulating retinal competence and Neurog2 required for progression of neurogenesis. These transcription factors are extensively co-expressed, suggesting similar regulation. We directly compared Atoh7 and Neurog2 regulation at the earliest stages of retinal neurogenesis in a broad spectrum of Notch pathway mutants. Notch1 and Rbpj normally block Atoh7 and Neurog2 expression. However, the combined activities of Notch1, Notch3 and Rbpj regulate Neurog2 patterning in the distal retina. Downstream of the Notch complex, we found the Hes1 repressor mediates Atoh7 suppression, but Hes1, Hes3 and Hes5 do not regulate Neurog2 expression. We also tested Notch-mediated regulation of Jag1 and Pax6 in the distal retina, to establish the appropriate context for Neurog2 patterning. We found that Notch1;Notch3 and Rbpj block co-expression of Jag1 and Neurog2, while specifically stimulating Pax6 within an adjacent domain. Our data suggest that Notch signaling controls the overall tempo of retinogenesis, by integrating cell fate specification, the wave of neurogenesis and the developmental status of cells ahead of this wave.

摘要

Notch 信号作为一个进化上保守的模块调节基本螺旋环螺旋 (bHLH) 因子,但组织特异性机制尚未完全阐明。在小鼠视网膜中,bHLH 基因 Atoh7 和 Neurog2 具有不同的功能,Atoh7 调节视网膜的潜能,Neurog2 则是神经发生进展所必需的。这些转录因子广泛共表达,表明存在相似的调节机制。我们在广泛的 Notch 途径突变体中直接比较了视网膜神经发生的最早阶段 Atoh7 和 Neurog2 的调节。Notch1 和 Rbpj 通常会阻断 Atoh7 和 Neurog2 的表达。然而,Notch1、Notch3 和 Rbpj 的组合活性调节远端视网膜中 Neurog2 的模式。在 Notch 复合物的下游,我们发现 Hes1 抑制因子介导 Atoh7 的抑制,但 Hes1、Hes3 和 Hes5 并不调节 Neurog2 的表达。我们还测试了 Notch 对远端视网膜中 Jag1 和 Pax6 的调节作用,以确定 Neurog2 模式形成的适当背景。我们发现 Notch1; Notch3 和 Rbpj 阻断 Jag1 和 Neurog2 的共表达,而在相邻区域内特异性地刺激 Pax6。我们的数据表明,Notch 信号通过整合细胞命运特化、神经发生波和该波前细胞的发育状态,来控制视网膜发生的整体节奏。

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本文引用的文献

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