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肌球蛋白 1G 促进 Nodal 信号通路控制斑马鱼左右不对称性。

Myosin1G promotes Nodal signaling to control zebrafish left-right asymmetry.

机构信息

Université Côte d'Azur, CNRS, Inserm, iBV, Nice, France.

出版信息

Nat Commun. 2024 Aug 2;15(1):6547. doi: 10.1038/s41467-024-50868-y.

Abstract

Myosin1D (Myo1D) has recently emerged as a conserved regulator of animal Left-Right (LR) asymmetry that governs the morphogenesis of the vertebrate central LR Organizer (LRO). In addition to Myo1D, the zebrafish genome encodes the closely related Myo1G. Here we show that while Myo1G also controls LR asymmetry, it does so through an entirely different mechanism. Myo1G promotes the Nodal-mediated transfer of laterality information from the LRO to target tissues. At the cellular level, Myo1G is associated with endosomes positive for the TGFβ signaling adapter SARA. myo1g mutants have fewer SARA-positive Activin receptor endosomes and a reduced responsiveness to Nodal ligands that results in a delay of left-sided Nodal propagation and tissue-specific laterality defects in organs that are most distant from the LRO. Additionally, Myo1G promotes signaling by different Nodal ligands in specific biological contexts. Our findings therefore identify Myo1G as a context-dependent regulator of the Nodal signaling pathway.

摘要

肌球蛋白 1D(Myo1D)最近被发现是一种保守的动物左右(LR)不对称调节剂,它控制着脊椎动物中央 LR 组织者(LRO)的形态发生。除了 Myo1D,斑马鱼基因组还编码了密切相关的 Myo1G。在这里,我们表明,虽然 Myo1G 也控制 LR 不对称,但它是通过完全不同的机制实现的。Myo1G 促进了 Nodal 介导的从 LRO 到靶组织的侧化信息的转移。在细胞水平上,Myo1G 与 TGFβ信号适配器 SARA 阳性的内体相关。myo1g 突变体中 SARA 阳性的激活素受体内体较少,对 Nodal 配体的反应性降低,导致左侧 Nodal 传播延迟,以及远离 LRO 的器官中组织特异性的侧化缺陷。此外,Myo1G 还促进了特定生物背景下不同 Nodal 配体的信号转导。因此,我们的研究结果确定 Myo1G 是 Nodal 信号通路的一种依赖于上下文的调节剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9f3/11297164/2724452f4351/41467_2024_50868_Fig1_HTML.jpg

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