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EphA4受体裂解调节脊髓运动轴突导向。

EphA4 receptor shedding regulates spinal motor axon guidance.

作者信息

Gatto Graziana, Morales Daniel, Kania Artur, Klein Rüdiger

机构信息

Department of Molecules-Signaling-Development, Max Planck Institute of Neurobiology, Am Klopferspitz 18, 82152 Martinsried, Germany.

Institut de Recherches Cliniques de Montréal, Montréal, QC H2W 1R7, Canada; Integrated Program in Neuroscience, McGill University, Montréal, QC H3A 2B4, Canada.

出版信息

Curr Biol. 2014 Oct 20;24(20):2355-65. doi: 10.1016/j.cub.2014.08.028. Epub 2014 Sep 25.

Abstract

BACKGROUND

Proteolytic processing of axon guidance receptors modulates their expression and functions. Contact repulsion by membrane-associated ephrins and Eph receptors was proposed to be facilitated by ectodomain cleavage, but whether this phenomenon is required for axon guidance in vivo is unknown.

RESULTS

In support of established models, we find that cleavage of EphA4 promotes cell-cell and growth cone-cell detachment in vitro. Unexpectedly, however, a cleavage resistant isoform of EphA4 is as effective as a wild-type EphA4 in redirecting motor axons in limbs. Mice in which EphA4 cleavage is genetically abolished have motor axon guidance defects, suggesting an important role of EphA4 cleavage in nonneuronal tissues such as the limb mesenchyme target of spinal motor neurons. Indeed, we find that blocking EphA4 cleavage increases expression of full-length EphA4 in limb mesenchyme, which-via cis-attenuation-apparently reduces the effective concentration of ephrinAs capable of triggering EphA4 forward signaling in the motor axons.

CONCLUSIONS

We propose that EphA4 cleavage is required to establish the concentration differential of active ephrins in the target tissue that is required for proper axon guidance. Our study reveals a novel mechanism to regulate guidance decision at an intermediate target based on the modulation of ligand availability by the proteolytic processing of the receptor.

摘要

背景

轴突导向受体的蛋白水解加工可调节其表达和功能。膜相关的 Ephrin 蛋白和 Eph 受体介导的接触排斥作用被认为是由胞外域裂解所促进的,但这种现象在体内轴突导向过程中是否必需尚不清楚。

结果

支持已建立的模型,我们发现 EphA4 的裂解促进体外细胞 - 细胞和生长锥 - 细胞的脱离。然而,出乎意料的是,EphA4 的一种抗裂解异构体在重定向肢体运动轴突方面与野生型 EphA4 一样有效。在 EphA4 裂解被基因敲除的小鼠中存在运动轴突导向缺陷,这表明 EphA4 裂解在非神经元组织(如脊髓运动神经元的肢体间充质靶点)中起重要作用。事实上,我们发现阻断 EphA4 裂解会增加肢体间充质中全长 EphA4 的表达,这通过顺式衰减显然降低了能够在运动轴突中触发 EphA4 正向信号传导的 EphrinA 的有效浓度。

结论

我们提出 EphA4 裂解对于在目标组织中建立适当轴突导向所需的活性 Ephrin 蛋白浓度差异是必需的。我们的研究揭示了一种基于受体蛋白水解加工对配体可用性的调节来调控中间靶点导向决策的新机制。

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