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硫酸乙酰肝素调控视网膜神经节细胞的视网膜内轴突寻路。

Heparan sulfate regulates intraretinal axon pathfinding by retinal ganglion cells.

机构信息

Department of Ophthalmology and Visual Science, Kumamoto University Graduate School of Medical Sciences, Japan.

出版信息

Invest Ophthalmol Vis Sci. 2011 Aug 22;52(9):6671-9. doi: 10.1167/iovs.11-7559.

Abstract

PURPOSE. Heparan sulfate (HS) is abundantly expressed in the developing neural retina; however, its role in the intraretinal axon guidance of retinal ganglion cells (RGCs) remains unclear. In this study, the authors examined whether HS was essential for the axon guidance of RGCs toward the optic nerve head. METHODS. The authors conditionally ablated the gene encoding the exostosin-1 (Ext1) enzyme, using the dickkopf homolog 3 (Dkk3)-Cre transgene, which disrupted HS expression in the mouse retina during directed pathfinding by RGC axons toward the optic nerve head. In situ hybridization, immunohistochemistry, DiI tracing, binding assay, and retinal explant assays were performed to evaluate the phenotypes of the mutants and the roles of HS in intraretinal axon guidance. RESULTS. Despite no gross abnormality in RGC distribution, the mutant RGC axons exhibited severe intraretinal guidance errors, including optic nerve hypoplasia, ectopic axon penetration through the full thickness of the neural retina and into the subretinal space, and disturbance of the centrifugal projection of RGC axons toward the optic nerve head. These abnormal phenotypes shared similarities with the RGC axon misguidance caused by mutations of genes encoding Netrin-1 and Slit-1/2. Explant assays revealed that the mutant RGCs exhibited disturbed Netrin-1-dependent axon outgrowth and Slit-2-dependent repulsion. CONCLUSIONS. The present study demonstrated that RGC axon projection toward the optic nerve head requires the expression of HS in the neural retina, suggesting that HS in the retina functions as an essential modulator of Netrin-1 and Slit-mediated intraretinal RGC axon guidance.

摘要

目的

硫酸乙酰肝素(HS)在发育中的神经视网膜中大量表达;然而,其在视网膜神经节细胞(RGC)的视网膜内轴突导向中的作用尚不清楚。在这项研究中,作者研究了 HS 是否对 RGC 轴突向视神经头的导向至关重要。

方法

作者使用 dickkopf 同源物 3(Dkk3)-Cre 转基因物条件性地敲除编码外切聚糖-1(Ext1)酶的基因,该基因在 RGC 轴突向视神经头定向寻路期间破坏了 HS 在小鼠视网膜中的表达。通过原位杂交、免疫组织化学、DiI 示踪、结合测定和视网膜外植体测定来评估突变体的表型以及 HS 在视网膜内轴突导向中的作用。

结果

尽管 RGC 分布没有明显异常,但突变的 RGC 轴突表现出严重的视网膜内导向错误,包括视神经发育不全、轴突穿过神经视网膜的全层并进入视网膜下间隙的异位穿透、以及 RGC 轴突向视神经头的离心投射紊乱。这些异常表型与 Netrin-1 和 Slit-1/2 基因编码突变引起的 RGC 轴突误导相似。外植体测定显示突变的 RGC 表现出 Netrin-1 依赖性轴突生长和 Slit-2 依赖性排斥的紊乱。

结论

本研究表明,RGC 轴突向视神经头的投射需要 HS 在视网膜中的表达,表明视网膜中的 HS 作为 Netrin-1 和 Slit 介导的视网膜内 RGC 轴突导向的必需调节剂。

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