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肌细胞极性蛋白 Vangl2 通过与酪氨酸激酶 MuSK 结合并调节其活性来塑造神经肌肉突触。

The cell polarity protein Vangl2 in the muscle shapes the neuromuscular synapse by binding to and regulating the tyrosine kinase MuSK.

机构信息

Sorbonne Université, Institut National de la Santé et de la Recherche Médicale, Institut de Myologie, Centre de Recherche en Myologie, Paris 75013, France.

Institut National de la Santé et de la Recherche Médicale, Neurocentre Magendie, UMR-S 1215, Bordeaux 33077, France.

出版信息

Sci Signal. 2022 May 17;15(734):eabg4982. doi: 10.1126/scisignal.abg4982.

Abstract

The development of the neuromuscular junction (NMJ) requires dynamic trans-synaptic coordination orchestrated by secreted factors, including Wnt family morphogens. To investigate how these synaptic cues in NMJ development are transduced, particularly in the regulation of acetylcholine receptor (AChR) accumulation in the postsynaptic membrane, we explored the function of Van Gogh-like protein 2 (Vangl2), a core component of Wnt planar cell polarity signaling. We found that conditional, muscle-specific ablation of in mice reproduced the NMJ differentiation defects seen in mice with global deletion. These alterations persisted into adulthood and led to NMJ disassembly, impaired neurotransmission, and deficits in motor function. Vangl2 and the muscle-specific receptor tyrosine kinase MuSK were functionally associated in Wnt signaling in the muscle. Vangl2 bound to and promoted the signaling activity of MuSK in response to Wnt11. The loss of impaired RhoA activation in cultured mouse myotubes and caused dispersed, rather than clustered, organization of AChRs at the postsynaptic or muscle cell side of NMJs in vivo. Our results identify Vangl2 as a key player of the core complex of molecules shaping neuromuscular synapses and thus shed light on the molecular mechanisms underlying NMJ assembly.

摘要

神经肌肉接头(NMJ)的发育需要受分泌因子(包括 Wnt 家族形态发生素)调控的动态突触间协调。为了研究这些 NMJ 发育中的突触线索是如何转导的,特别是在调节突触后膜乙酰胆碱受体(AChR)的积累方面,我们研究了梵高样蛋白 2(Vangl2)的功能,Vangl2 是 Wnt 平面细胞极性信号传导的核心组成部分。我们发现,在小鼠中条件性地、肌肉特异性地敲除 ,可重现 全局缺失小鼠中所见的 NMJ 分化缺陷。这些改变持续到成年期,并导致 NMJ 解体、神经传递受损以及运动功能缺陷。Vangl2 和肌肉特异性受体酪氨酸激酶 MuSK 在肌肉中的 Wnt 信号传导中具有功能关联。Vangl2 与 MuSK 结合并促进其信号活性对 Wnt11 的反应。缺失 会损害培养的小鼠肌管中的 RhoA 激活,并导致 AChR 在 NMJ 的突触后或肌肉细胞侧呈弥散而非聚集的组织。我们的结果表明 Vangl2 是塑造神经肌肉突触的核心分子复合物的关键成员,从而揭示了 NMJ 组装的分子机制。

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