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Contribution of hedgehog signaling to the establishment of left-right asymmetry in the sea urchin

机译:刺猬信令对海胆左右不对称建立的贡献

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Most bilaterians exhibit a left-right asymmetric distribution of their internal organs. The sea urchin larva is notable in this regard since most adult structures are generated from left sided embryonic structures. The gene regulatory network governing this larval asymmetry is still a work in progress but involves several conserved signaling pathways including Nodal, and BMP. Here we provide a comprehensive analysis of Hedgehog signaling and it's contribution to left-right asymmetry. We report that Hh signaling plays a conserved role to regulate late asymmetric expression of Nodal and that this regulation occurs after Nodal breaks left-right symmetry in the mesoderm. Thus, while Hh functions to maintain late Nodal expression, the molecular asymmetry of the future coelomic pouches is locked in. Furthermore we report that cilia play a role only insofar as to transduce Hh signaling and do not have an independent effect on the asymmetry of the mesoderm. From this, we are able to construct a more complete regulatory network governing the establishment of left-right asymmetry in the sea urchin. (C) 2016 Elsevier Inc. All rights reserved.
机译:大多数双层人都表现出左右非对称分布的内脏。在这方面,海胆幼虫是值得注意的,因为大多数成年结构都是从左侧胚胎结构产生的。管理该幼虫不对称的基因监管网络仍然是正在进行的工作,但涉及包括节点和BMP的几种保守的信号通路。在这里,我们对刺猬信令进行了全面的分析,并且对左右不对称的贡献是贡献。我们认为HH信号传导在节拍的迟到不对称性中发挥守恒作用,并且在中胚层中左右对称性之后发生这种调节。因此,当HH函数保持晚期表达后,未来的圆锥形袋的分子不对称被锁定。此外,我们报告纤毛只能突出的作用,只要转换HH信号,并且没有对不对称的不对称作用。 Mesoderm。从这一点来看,我们能够建设一个更完整的监管网络,管理海胆中左右不对称的建立。 (c)2016 Elsevier Inc.保留所有权利。

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