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Tead蛋白与另一种因子协同作用,激活节点中的Foxa2增强子。

Tead proteins activate the Foxa2 enhancer in the node in cooperation with a second factor.

作者信息

Sawada Atsushi, Nishizaki Yuriko, Sato Hiroko, Yada Yukari, Nakayama Rika, Yamamoto Shinji, Nishioka Noriyuki, Kondoh Hisato, Sasaki Hiroshi

机构信息

Laboratory for Embryonic Induction, RIKEN Center for Developmental Biology, 2-2-3 Minatojima-minamimachi, Kobe, Hyogo 650-0047, Japan.

出版信息

Development. 2005 Nov;132(21):4719-29. doi: 10.1242/dev.02059. Epub 2005 Oct 5.

Abstract

The cell population and the activity of the organizer change during the course of development. We addressed the mechanism of mouse node development via an analysis of the node/notochord enhancer (NE) of Foxa2. We first identified the core element (CE) of the enhancer, which in multimeric form drives gene expression in the node. The CE was activated in Wnt/beta-catenin-treated P19 cells with a time lag, and this activation was dependent on two separate sequence motifs within the CE. These same motifs were also required for enhancer activity in transgenic embryos. We identified the Tead family of transcription factors as binding proteins for the 3' motif. Teads and their co-factor YAP65 activated the CE in P19 cells, and binding of Tead to CE was essential for enhancer activity. Inhibition of Tead activity by repressor-modified Tead compromised NE enhancer activation and notochord development in transgenic mouse embryos. Furthermore, manipulation of Tead activity in zebrafish embryos led to altered expression of foxa2 in the embryonic shield. These results suggest that Tead activates the Foxa2 enhancer core element in the mouse node in cooperation with a second factor that binds to the 5' element, and that a similar mechanism also operates in the zebrafish shield.

摘要

在发育过程中,组织者的细胞群体和活性会发生变化。我们通过分析Foxa2的节点/脊索增强子(NE)来探讨小鼠节点发育的机制。我们首先鉴定了增强子的核心元件(CE),其多聚体形式可驱动节点中的基因表达。CE在经Wnt/β-连环蛋白处理的P19细胞中出现延迟激活,且这种激活依赖于CE内两个独立的序列基序。这些相同的基序对于转基因胚胎中的增强子活性也是必需的。我们鉴定出转录因子Tead家族为3'基序的结合蛋白。Tead及其辅因子YAP65在P19细胞中激活CE,且Tead与CE的结合对于增强子活性至关重要。通过阻遏物修饰的Tead抑制Tead活性会损害转基因小鼠胚胎中的NE增强子激活和脊索发育。此外,在斑马鱼胚胎中操纵Tead活性会导致胚胎盾中foxa2的表达改变。这些结果表明,Tead与结合至5'元件的第二个因子协同激活小鼠节点中的Foxa2增强子核心元件,并且类似的机制也在斑马鱼盾中起作用。

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