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神经元膜上多种Eph受体的激活与视神经病变的发作相关。

Activation of multiple Eph receptors on neuronal membranes correlates with the onset of optic neuropathy.

作者信息

Strong Thomas A, Esquivel Juan, Wang Qikai, Ledon Paul J, Wang Hua, Gaidosh Gabriel, Tse David, Pelaez Daniel

机构信息

Bascom Palmer Eye Institute, Department of Ophthalmology, University of Miami Miller School of Medicine, Miami, FL, USA.

Dr. Nasser Al-Rashid Orbital Vision Research Center, Bascom Palmer Eye Institute, University of Miami Miller School of Medicine, 1638 NW 10th Avenue, Miami, FL, 33136, USA.

出版信息

Eye Vis (Lond). 2023 Oct 2;10(1):42. doi: 10.1186/s40662-023-00359-w.

Abstract

BACKGROUND

Optic neuropathy is a major cause of irreversible blindness, yet the molecular determinants that contribute to neuronal demise have not been fully elucidated. Several studies have identified 'ephrin signaling' as one of the most dysregulated pathways in the early pathophysiology of optic neuropathy with varied etiologies. Developmentally, gradients in ephrin signaling coordinate retinotopic mapping via repulsive modulation of cytoskeletal dynamics in neuronal membranes. Little is known about the role ephrin signaling plays in the post-natal visual system and its correlation with the onset of optic neuropathy.

METHODS

Postnatal mouse retinas were collected for mass spectrometry analysis for erythropoietin-producing human hepatocellular (Eph) receptors. Optic nerve crush (ONC) model was employed to induce optic neuropathy, and proteomic changes during the acute phase of neuropathic onset were analyzed. Confocal and super-resolution microscopy determined the cellular localization of activated Eph receptors after ONC injury. Eph receptor inhibitors assessed the neuroprotective effect of ephrin signaling modulation.

RESULTS

Mass spectrometry revealed expression of seven Eph receptors (EphA2, A4, A5, B1, B2, B3, and B6) in postnatal mouse retinal tissue. Immunoblotting analysis indicated a significant increase in phosphorylation of these Eph receptors 48 h after ONC. Confocal microscopy demonstrated the presence of both subclasses of Eph receptors within the retina. Stochastic optical reconstruction microscopy (STORM) super-resolution imaging combined with optimal transport colocalization analysis revealed a significant co-localization of activated Eph receptors with injured neuronal cells, compared to uninjured neuronal and/or injured glial cells, 48 h post-ONC. Eph receptor inhibitors displayed notable neuroprotective effects for retinal ganglion cells (RGCs) after six days of ONC injury.

CONCLUSIONS

Our findings demonstrate the functional presence of diverse Eph receptors in the postnatal mammalian retina, capable of modulating multiple biological processes. Pan-Eph receptor activation contributes to the onset of neuropathy in optic neuropathies, with preferential activation of Eph receptors on neuronal processes in the inner retina following optic nerve injury. Notably, Eph receptor activation precedes neuronal loss. We observed a neuroprotective effect on RGCs upon inhibiting Eph receptors. Our study highlights the importance of investigating this repulsive pathway in early optic neuropathies and provides a comprehensive characterization of the receptors present in the developed retina of mice, relevant to both homeostasis and disease processes.

摘要

背景

视神经病变是不可逆失明的主要原因,然而导致神经元死亡的分子决定因素尚未完全阐明。多项研究已确定“ Ephrin信号传导”是多种病因的视神经病变早期病理生理学中失调最严重的途径之一。在发育过程中, Ephrin信号传导梯度通过对神经元膜中细胞骨架动力学的排斥性调节来协调视网膜拓扑映射。关于Ephrin信号传导在出生后视觉系统中的作用及其与视神经病变发作的相关性知之甚少。

方法

收集出生后小鼠视网膜用于产生促红细胞生成素的人肝细胞(Eph)受体的质谱分析。采用视神经挤压(ONC)模型诱导视神经病变,并分析神经病变发作急性期的蛋白质组学变化。共聚焦显微镜和超分辨率显微镜确定了ONC损伤后活化的Eph受体的细胞定位。Eph受体抑制剂评估了Ephrin信号传导调节的神经保护作用。

结果

质谱分析显示出生后小鼠视网膜组织中存在七种Eph受体(EphA2、A4、A5、B1、B2、B3和B6)。免疫印迹分析表明,ONC后48小时这些Eph受体的磷酸化显著增加。共聚焦显微镜显示视网膜内存在两种类型的Eph受体。随机光学重建显微镜(STORM)超分辨率成像结合最优传输共定位分析显示,与未损伤的神经元和/或损伤的神经胶质细胞相比,ONC后48小时活化的Eph受体与损伤的神经元细胞有显著的共定位。Eph受体抑制剂在ONC损伤六天后对视网膜神经节细胞(RGC)显示出显著的神经保护作用。

结论

我们的研究结果表明,多种Eph受体在出生后哺乳动物视网膜中具有功能,能够调节多种生物学过程。泛Eph受体激活导致视神经病变中神经病变的发作,视神经损伤后内视网膜神经元突起上的Eph受体优先激活。值得注意的是,Eph受体激活先于神经元丢失。我们观察到抑制Eph受体对RGC有神经保护作用。我们的研究强调了在早期视神经病变中研究这种排斥途径的重要性,并全面表征了小鼠发育视网膜中存在的与体内平衡和疾病过程相关的受体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fbf/10544557/168b1ffa2191/40662_2023_359_Fig1_HTML.jpg

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