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首页> 外文期刊>Developmental biology >Maternal Vsx1 plays an essential role in regulating prechordal mesendoderm and forebrain formation in zebrafish
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Maternal Vsx1 plays an essential role in regulating prechordal mesendoderm and forebrain formation in zebrafish

机译:产妇Vsx1在调节斑马鱼的前中胚层和前脑形成中起重要作用

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Prechordal mesendoderm (PME) is a derivative of gastrula organizer underlying the anterior neural plate of vertebrate embryos. It has been firmly established that PME is critical for head induction and anterior-posterior patterning. Therefore, the establishment of PME in a desired shape and size at a correct position during early embryogenesis is crucial for normal head patterning. However, it remains largely unclear how the desired form and size of PME is generated at a predestined position during early embryogenesis. Here we show that in zebrafish a maternal transcription repressor Vsx1 is essential for this early developmental regulation. Knocking down maternal vsx1 resulted in impaired PME formation and progression associated with a deficient and posteriorized forebrain. Loss- and gain-of-function experiments showed that maternal Vsx1 is essential for repressing ntl ectopic expression in more animal region at early gastrula stages. Chromatin immunoprecipitation assay in combination with core consensus sequence mutation analysis further revealed that maternal Vsx1 can directly repress ntl transcription by binding to the proximal promoter at a specific site. Simultaneous inhibition of ntl function could successfully suppress the defects of both PME and forebrain formation in maternal Vsx1 knockdown embryos. Our results reveal a pivotal role for maternal Vsx1 as a direct transcriptional repressor of ntl expression at the margin of the zebrafish gastrula to ensure directional cell polarization and migration of PME cells. (C) 2014 Elsevier Inc. All rights reserved.
机译:脊索前中胚层(PME)是位于脊椎动物胚胎前神经板下方的腹肌组织器的衍生物。已经确定PME对于诱导头部和前后模式至关重要。因此,在早期胚胎发生过程中在正确的位置以所需的形状和大小建立PME对于正常的头部构图至关重要。但是,在早期胚胎发生过程中,如何在预定位置产生所需的PME形式和大小仍不清楚。在这里,我们显示在斑马鱼中,母体转录抑制因子Vsx1对于这种早期发育调控至关重要。敲除孕产妇vsx1会导致PME的形成和进展受损,并伴有前脑功能不足和后继。功能丧失和功能获得实验表明,母体Vsx1对于抑制早期胃胚期更多动物区域的ntl异位表达至关重要。染色质免疫沉淀试验与核心共有序列突变分析相结合,进一步揭示了母体Vsx1可通过与特定位点的近端启动子结合而直接抑制ntl转录。同时抑制ntl功能可以成功地抑制母体Vsx1基因敲除胚胎中PME和前脑形成的缺陷。我们的结果揭示了母亲Vsx1作为斑马鱼腹缘边缘ntl表达的直接转录阻遏物的关键作用,以确保定向细胞极化和PME细胞迁移。 (C)2014 Elsevier Inc.保留所有权利。

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