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nodal 信号转导的调节通过受体相互作用和正反馈。

Regulation of Nodal signaling propagation by receptor interactions and positive feedback.

机构信息

Friedrich Miescher Laboratory of the Max Planck Society, Tübingen, Germany.

University of Konstanz, Konstanz, Germany.

出版信息

Elife. 2022 Sep 23;11:e66397. doi: 10.7554/eLife.66397.

Abstract

During vertebrate embryogenesis, the germ layers are patterned by secreted Nodal signals. In the classical model, Nodals elicit signaling by binding to a complex comprising Type I/II Activin receptors (Acvr) and the co-receptor Tdgf1. However, it is currently unclear whether receptor binding can also affect the distribution of Nodals themselves through the embryo, and it is unknown which of the putative Acvr paralogs mediate Nodal signaling in zebrafish. Here, we characterize three Type I (Acvr1) and four Type II (Acvr2) homologs and show that - except for Acvr1c - all receptor-encoding transcripts are maternally deposited and present during zebrafish embryogenesis. We generated mutants and used them together with combinatorial morpholino knockdown and CRISPR F0 knockout (KO) approaches to assess compound loss-of-function phenotypes. We discovered that the Acvr2 homologs function partly redundantly and partially independently of Nodal to pattern the early zebrafish embryo, whereas the Type I receptors Acvr1b-a and Acvr1b-b redundantly act as major mediators of Nodal signaling. By combining quantitative analyses with expression manipulations, we found that feedback-regulated Type I receptors and co-receptors can directly influence the diffusion and distribution of Nodals, providing a mechanism for the spatial restriction of Nodal signaling during germ layer patterning.

摘要

在脊椎动物胚胎发生过程中,胚层由分泌的 Nodal 信号定型。在经典模型中,Nodals 通过与包含 I/II 型激活素受体 (Acvr) 和共受体 Tdgf1 的复合物结合来引发信号转导。然而,目前尚不清楚受体结合是否也可以通过胚胎影响 Nodals 本身的分布,也不知道哪些假定的 Acvr 同源物在斑马鱼中介导 Nodal 信号转导。在这里,我们描述了三种 I 型 (Acvr1) 和四种 II 型 (Acvr2) 同源物,并表明除了 Acvr1c 之外,所有受体编码转录物都由母体沉积并在斑马鱼胚胎发生过程中存在。我们生成了突变体,并使用它们与组合的 morpholino 敲低和 CRISPR F0 敲除 (KO) 方法一起评估复合功能丧失表型。我们发现 Acvr2 同源物部分冗余且部分独立于 Nodal 来定型早期斑马鱼胚胎,而 I 型受体 Acvr1b-a 和 Acvr1b-b 则作为 Nodal 信号转导的主要介质冗余地发挥作用。通过将定量分析与表达操作相结合,我们发现反馈调节的 I 型受体和共受体可以直接影响 Nodals 的扩散和分布,为 Nodal 信号转导在胚层定型过程中的空间限制提供了一种机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e1c/9612913/bb061b6f0aaf/elife-66397-fig1.jpg

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