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Asymmetric and node-specific nodal expression patterns are controlled by two distinct cis-acting regulatory elements

机译:不对称和特定于节点的节点表达方式受两个不同的顺式调控元件控制

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摘要

The TGFβ-related molecule Nodal is required for establishment of the anterior–posterior (A–P) and left–right (L-R) body axes of the vertebrate embryo. In mouse, several discrete sites of nodal activity closely correlate with its highly dynamic expression domains. nodal function in the posterior epiblast promotes primitive streak formation, whereas transient nodal expression in the extraembryonic visceral endoderm is essential for patterning the rostral central nervous system. Asymmetric nodal expression in the developing node and at later stages in left lateral plate mesoderm has been implicated as a key regulator of L-R axis determination. We have analyzed the cis-regulatory elements controlling nodal expression domains during early development. We show that the regulatory sequences conferring node-specific expression are contained in an upstream region of the locus, whereas early expression in the endoderm and epiblast and asymmetric expression at later stages on the left side of the body axis are controlled by a 600-bp intronic enhancer. Targeted deletion of a 100-bp subregion of this intronicenhancer eliminates nodal expression in the early epiblast andvisceral endoderm and disrupts asymmetric expression in the node andlateral plate mesoderm. Thus, developmentally regulated nodalexpression at distinct tissue sites during A–P and L-R axis formationis potentially controlled by common transcriptional activators.
机译:与TGFβ相关的分子Nodal是建立脊椎动物胚胎的前后(A–P)和左右(L-R)体轴所必需的。在小鼠中,节点活动的几个离散位点与其高度动态的表达域紧密相关。后上皮细胞中的淋巴结功能促进原始条纹的形成,而胚外内脏内胚层中的短暂淋巴结表达对于图案化鼻中枢神经系统至关重要。在发育中的节点以及左侧外侧中胚层的后期,不对称的结节表达被认为是L-R轴确定的关键调节因子。我们已经分析了早期发育过程中控制节点表达域的顺式调控元件。我们表明,在节点的上游区域中包含赋予节点特异性表达的调控序列,而内胚层和表皮细胞的早期表达以及体轴左侧后期的不对称表达受600 bp控制。内含增强剂。有针对性地删除该内含子的100 bp子区域增强子消除了早期成骨细胞中的淋巴结表达,并且内脏内胚层并破坏结节中的不对称表达侧板中胚层。因此,受发育调节的淋巴结在A–P和L-R轴形成过程中不同组织部位的表达可能由常见的转录激活因子控制。

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