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由her4调控元件驱动的荧光蛋白表达揭示了斑马鱼胚胎神经系统中Notch信号的时空模式。

Fluorescent protein expression driven by her4 regulatory elements reveals the spatiotemporal pattern of Notch signaling in the nervous system of zebrafish embryos.

作者信息

Yeo Sang-Yeob, Kim Minjung, Kim Hyung-Seok, Huh Tae-Lin, Chitnis Ajay B

机构信息

Department of Genetic Engineering, Kyungpook National University, Daegu 702-701, Korea.

出版信息

Dev Biol. 2007 Jan 15;301(2):555-67. doi: 10.1016/j.ydbio.2006.10.020. Epub 2006 Oct 21.

Abstract

Notch activation inhibits neuronal differentiation during development of the nervous system; however, the dynamic role of Notch signaling in individual cell lineages remains poorly understood. We have characterized 3.4 kb 5'-regulatory sequence of a Notch target gene, her4, and used it to drive fluorescent gene expression in transgenic lines where the spatiotemporal pattern of Notch activation can be examined in vivo. The 3.4 kb her4 promoter contains five predicted Su(H) binding sites of which two proximal sites were confirmed to be required for Notch-mediated transcriptional activation. Without Notch, Su(H) effectively represses transcription regulated by the promoter. Analyses of transgenic zebrafish showed that while the expression of proneural genes and Notch activation were both critical for endogenous her4 expression, reporter gene expression was primarily regulated by Notch activity. This study also showed that her4 may be differently regulated in sensory cranial ganglia, where Notch activity is not essential for her4 expression and where Su(H) may repress her4 expression. The establishment of a reporter line with Notch-Su(H)-dependent fluorescent gene expression provides a tool to explore the complex role of Notch signaling in the development of vertebrate nervous system.

摘要

Notch激活在神经系统发育过程中抑制神经元分化;然而,Notch信号在单个细胞谱系中的动态作用仍知之甚少。我们对Notch靶基因her4的3.4 kb 5'调控序列进行了表征,并利用它在转基因系中驱动荧光基因表达,在体内可检测Notch激活的时空模式。3.4 kb的her4启动子包含五个预测的Su(H)结合位点,其中两个近端位点被证实是Notch介导的转录激活所必需的。没有Notch时,Su(H)有效抑制启动子调控的转录。对转基因斑马鱼的分析表明,虽然神经前体基因的表达和Notch激活对内源性her4表达都至关重要,但报告基因的表达主要受Notch活性调控。这项研究还表明,her4在感觉颅神经节中的调控可能不同,在那里Notch活性对her4表达不是必需的,且Su(H)可能抑制her4表达。建立具有Notch-Su(H)依赖性荧光基因表达的报告系,为探索Notch信号在脊椎动物神经系统发育中的复杂作用提供了一个工具。

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