首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Wnt Coreceptor Ryk Regulates Wnt/Planar Cell Polarity by Modulating the Degradation of the Core Planar Cell Polarity Component Vangl2
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The Wnt Coreceptor Ryk Regulates Wnt/Planar Cell Polarity by Modulating the Degradation of the Core Planar Cell Polarity Component Vangl2

机译:Wnt Coreceptor Ryk通过调节核心平面细胞极性成分Vangl2的降解来调节Wnt /平面细胞极性。

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摘要

The Wnt signaling pathways control many critical developmental and adult physiological processes. In vertebrates, one fundamentally important function of Wnts is to provide directional information by regulating the evolutionarily conserved planar cell polarity (PCP) pathway during embryonic morphogenesis. However, despite the critical roles of Wnts and PCP in vertebrate development and disease, little is known about the molecular mechanisms underlying Wnt regulation of PCP. Here, we have found that the receptor-like tyrosine kinase (Ryk), a Wnt5a-binding protein required in axon guidance, regulates PCP signaling. We show that Ryk interacts with Vangl2 genetically and biochemically, and such interaction is potentiated by Wnt5a. Loss of Ryk in a Vangl2+/− background results in classic PCP defects, including open neural tube, misalignment of sensory hair cells in the inner ear, and shortened long bones in the limbs. Complete loss of both Ryk and Vangl2 results in more severe phenotypes that resemble the Wnt5a−/− mutant in many aspects such as shortened anterior-posterior body axis, limb, and frontonasal process. Our data identify the Wnt5a-binding protein Ryk as a general regulator of the mammalian Wnt/PCP signaling pathway. We show that Ryk transduces Wnt5a signaling by forming a complex with Vangl2 and that Ryk regulates PCP by at least in part promoting Vangl2 stability. As human mutations in WNT5A and VANGL2 are found to cause Robinow syndrome and neural tube defects, respectively, our results further suggest that human mutations in RYK may also be involved in these diseases.
机译:Wnt信号通路控制许多关键的发育和成年生理过程。在脊椎动物中,Wnts的一项基本重要功能是通过调节胚胎形态发生过程中进化上保守的平面细胞极性(PCP)途径来提供方向信息。然而,尽管Wnts和PCP在脊椎动物发育和疾病中起着关键作用,但对Wnt调控PCP的分子机制知之甚少。在这里,我们发现轴突指导所需的受体样酪氨酸激酶(Ryk),一种Wnt5a结合蛋白,调节PCP信号传导。我们表明Ryk基因和生化与Vangl2进行交互,并且这种交互作用被Wnt5a增强。 Vangl2 +/- 背景中Ryk的丢失导致经典的PCP缺陷,包括神经管开放,内耳感觉毛细胞未对准以及四肢长骨缩短。 Ryk和Vangl2的完全丧失导致更严重的表型,在许多方面如Wnt5a -/-突变体,如缩短的前后体轴,四肢和额鼻突。我们的数据确定Wnt5a结合蛋白Ryk是哺乳动物Wnt / PCP信号通路的一般调节物。我们显示Ryk通过与Vangl2形成复合物来转导Wnt5a信号,并且Ryk通过至少部分促进Vangl2稳定性来调节PCP。由于发现WNT5A和VANGL2中的人类突变分别导致Robinow综合征和神经管缺陷,我们的结果进一步表明RYK中的人类突变也可能与这些疾病有关。

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