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在海鞘的发育过程中,不同的转录调控机制支持 Otx 在神经前体细胞中的持续表达。

Continuous expression of Otx in the anterior neural lineage is supported by different transcriptional regulatory mechanisms during the development of Halocynthia roretzi.

机构信息

Department of Biological Sciences, Graduate School of Science and Engineering, Tokyo Metropolitan University, 1-1 Minamiohsawa, Hachiohji, Tokyo, 192-0397, Japan.

出版信息

Dev Growth Differ. 2014 Feb;56(2):189-98. doi: 10.1111/dgd.12118. Epub 2014 Jan 17.

Abstract

The process of establishing the anterior-posterior axis is an important event in the development of bilateral animals. Otx, which encodes a homeodomain transcription factor, is continuously expressed in the anterior part of the embryo in a wide range of animals. This pattern of expression is thought to be important for the formation of anterior neural structures, but the regulatory mechanism that sustains the expression is not known. Here, using embryos of the ascidian, Halocynthia roretzi, we investigated how the transcription of Otx is maintained in the cells of the anterior neural lineage during embryogenesis. We identified an enhancer region sufficient to mimic the Otx expression pattern from the gastrula to tailbud stages. Several putative transcription factor binding sites that are required for generating the Otx expression pattern were also identified. Distinct sets of sites were required at different developmental stages, suggesting that distinct transcriptional mechanisms regulate Otx transcription in each of the gastrula, neurula and tailbud stages. Along with previous studies on the transcriptional regulatory mechanism of Otx during the pre-gastrula stages, the present results provide the first overview of the mechanism that sustains Otx expression in the anterior neural lineage during ascidian embryogenesis and demonstrate the complexity of a developmental mechanism that maintains Otx transcription.

摘要

前后轴的建立过程是双侧动物发育中的一个重要事件。Otx 编码一个同源域转录因子,在广泛的动物胚胎的前部持续表达。这种表达模式被认为对前神经结构的形成很重要,但维持表达的调节机制尚不清楚。在这里,我们使用海鞘 Halocynthia roretzi 的胚胎,研究了在胚胎发生过程中 Otx 转录是如何在前神经谱系细胞中维持的。我们从原肠胚到尾芽阶段鉴定了一个增强子区域,该区域足以模拟 Otx 的表达模式。还鉴定了几个对于产生 Otx 表达模式所必需的假定转录因子结合位点。在不同的发育阶段需要不同的位点集,这表明在每个原肠胚、神经胚和尾芽阶段,不同的转录机制调节 Otx 转录。结合先前关于 Otx 在原肠胚前阶段的转录调控机制的研究,本研究结果首次概述了在海鞘胚胎发生过程中维持前神经谱系中 Otx 表达的机制,并证明了维持 Otx 转录的发育机制的复杂性。

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