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EphA4介导视网膜神经节细胞中 EphrinB1 依赖性黏附。

EphA4 Mediates EphrinB1-Dependent Adhesion in Retinal Ganglion Cells.

作者信息

Murcia-Belmonte Verónica, Chauvin Géraud, Coca Yaiza, Escalante Augusto, Klein Rüdiger, Herrera Eloísa

机构信息

Instituto de Neurociencias de Alicante (Consejo Superior de Investigaciones Científicas-Universidad Miguel Hernández, CSIC-UMH), Campus San Juan, Alicante 03550, Spain

Instituto de Neurociencias de Alicante (Consejo Superior de Investigaciones Científicas-Universidad Miguel Hernández, CSIC-UMH), Campus San Juan, Alicante 03550, Spain.

出版信息

J Neurosci. 2025 Jan 22;45(4):e0043242024. doi: 10.1523/JNEUROSCI.0043-24.2024.

Abstract

Eph/ephrin signaling is crucial for organizing retinotopic maps in vertebrates. Unlike other EphAs, which are expressed in the embryonic ventral retina, EphA4 is found in the retinal ganglion cell (RGC) layer at perinatal stages, and its role in mammalian visual system development remains unclear. Using classic in vitro stripe assays, we demonstrate that, while RGC axons are repelled by ephrinB2, they grow on ephrinB1 stripes through EphA4-mediated adhesion. In vivo, retinal axons from EphA4-deficient mice from either sex show impaired arborization in the medial, but not lateral, regions of the superior colliculus that express ephrinB1. Gain-of-function experiments further reveal that ephrinB1-mediated adhesion depends on EphA4 tyrosine kinase activity but it is independent of its sterile alpha motif. Together, our findings suggest that EphA4/ephrinB1 forward signaling likely facilitates adhesion between retinal axon terminals and cells in the medial colliculus, contributing to the establishment of proper connectivity within the visual system.

摘要

Eph/ephrin信号传导对于脊椎动物视网膜拓扑图的组织至关重要。与其他在胚胎期腹侧视网膜表达的EphA不同,EphA4在围产期阶段存在于视网膜神经节细胞(RGC)层,其在哺乳动物视觉系统发育中的作用仍不清楚。使用经典的体外条纹试验,我们证明,虽然RGC轴突被ephrinB2排斥,但它们通过EphA4介导的粘附在ephrinB1条纹上生长。在体内,来自雌雄EphA4缺陷小鼠的视网膜轴突在上丘表达ephrinB1的内侧区域而非外侧区域显示出分支受损。功能获得实验进一步揭示,ephrinB1介导的粘附依赖于EphA4酪氨酸激酶活性,但不依赖于其无活性α基序。总之,我们的研究结果表明,EphA4/ephrinB1正向信号传导可能促进视网膜轴突末端与内侧丘脑中的细胞之间的粘附,有助于在视觉系统内建立适当的连接。

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