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Notch 信号通路对于水螅的头部再生和触手模式形成是必需的。

Notch-signalling is required for head regeneration and tentacle patterning in Hydra.

机构信息

Department of Biology 2, Ludwig-Maximilians-Universität München, Munich, Germany.

出版信息

Dev Biol. 2013 Nov 1;383(1):146-57. doi: 10.1016/j.ydbio.2013.08.022. Epub 2013 Sep 6.

Abstract

Local self-activation and long ranging inhibition provide a mechanism for setting up organising regions as signalling centres for the development of structures in the surrounding tissue. The adult hydra hypostome functions as head organiser. After hydra head removal it is newly formed and complete heads can be regenerated. The molecular components of this organising region involve Wnt-signalling and β-catenin. However, it is not known how correct patterning of hypostome and tentacles are achieved in the hydra head and whether other signals in addition to HyWnt3 are needed for re-establishing the new organiser after head removal. Here we show that Notch-signalling is required for re-establishing the organiser during regeneration and that this is due to its role in restricting tentacle activation. Blocking Notch-signalling leads to the formation of irregular head structures characterised by excess tentacle tissue and aberrant expression of genes that mark the tentacle boundaries. This indicates a role for Notch-signalling in defining the tentacle pattern in the hydra head. Moreover, lateral inhibition by HvNotch and its target HyHes are required for head regeneration and without this the formation of the β-catenin/Wnt dependent head organiser is impaired. Work on prebilaterian model organisms has shown that the Wnt-pathway is important for setting up signalling centres for axial patterning in early multicellular animals. Our data suggest that the integration of Wnt-signalling with Notch-Delta activity was also involved in the evolution of defined body plans in animals.

摘要

局部自激活和长程抑制为建立信号中心提供了一种机制,这些信号中心可作为周围组织中结构发育的信号中心。成年水螅咽下部充当头部组织者。水螅头部切除后,会重新形成完整的头部,并且可以再生。该组织区域的分子组成涉及 Wnt 信号和 β-连环蛋白。但是,尚不清楚在水螅头部中如何实现咽下部和触手的正确模式化,以及在头部切除后重新建立新的组织者是否需要除 HyWnt3 以外的其他信号。在这里,我们表明 Notch 信号在再生过程中对于重新建立组织者是必需的,这是由于其在限制触手激活中的作用。阻断 Notch 信号会导致不规则头部结构的形成,其特征是触手组织过多,并且标记触手边界的基因表达异常。这表明 Notch 信号在定义水螅头部中的触手模式中起作用。此外,HvNotch 和其靶基因 HyHes 的侧向抑制对于头部再生是必需的,如果没有这种抑制,β-连环蛋白/Wnt 依赖性头部组织者的形成就会受到损害。在原口动物模型生物上的研究表明,Wnt 途径对于在早期多细胞动物中建立轴向模式的信号中心很重要。我们的数据表明,Wnt 信号与 Notch-Delta 活性的整合也参与了动物中明确身体计划的进化。

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