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JUN is important for ocular hypertension-induced retinal ganglion cell degeneration

机译:JUN对于高眼压诱发的视网膜神经节细胞变性很重要

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摘要

Ocular hypertension, a major risk factor for glaucoma, is thought to trigger glaucomatous neurodegeneration through injury to retinal ganglion cell (RGC) axons. The molecular signaling pathway leading from ocular hypertension to RGC degeneration, however, is not well defined. JNK signaling, a component of the mitogen-activated protein kinase (MAPK) family, and its canonical target, the transcription factor JUN, have been shown to regulate neurodegeneration in many different systems. JUN is expressed after glaucoma-relevant injuries and Jun deficiency protects RGCs after mechanical injury to the optic nerve. Here, we tested the importance of JNK–JUN signaling for RGC death after ocular hypertensive axonal injury in an age-related, mouse model of ocular hypertension. Immunohistochemistry was performed to evaluate JUN expression in ocular hypertensive DBA/2J mice. JUN was expressed in a temporal and spatial pattern consistent with a role in glaucomatous injury. To determine the importance of JUN in ocular hypertension-induced RGC death, a floxed allele of Jun and a retinal expressed cre recombinase (Six3-cre) were backcrossed onto the DBA/2J background. Intraocular pressure (IOP) and gross morphology of the retina and optic nerve head were assessed to determine whether removing Jun from the developing retina altered IOP elevation or retinal development. Jun deficiency in the retina did not alter DBA/2J IOP elevation or retinal development. Optic nerves and retinas were assessed at ages known to have glaucomatous damage in DBA/2J mice. Jun deficiency protected RGC somas from ocular hypertensive injury, but did not protect RGC axons from glaucomatous neurodegeneration. Jun is a major regulator of RGC somal degeneration after glaucomatous ocular hypertensive injury. These results suggest in glaucomatous neurodegeneration, JNK–JUN signaling has a major role as a pro-death signaling pathway between axonal injury and somal degeneration.
机译:高眼压是青光眼的主要危险因素,据认为可通过损伤视网膜神经节细胞(RGC)轴突来引发青光眼神经变性。但是,从高眼压到RGC变性的分子信号传导途径尚不明确。 JNK信号是有丝分裂原激活的蛋白激酶(MAPK)家族的一个组成部分,其规范的靶标转录因子JUN在许多不同的系统中均能调节神经变性。 JUN在青光眼相关损伤后表达,Jun缺乏保护视神经机械损伤后的RGC。在这里,我们在年龄相关的高眼压小鼠模型中测试了JNK–JUN信号转导对于眼压性轴索损伤后RGC死亡的重要性。进行免疫组织化学以评估眼高压DBA / 2J小鼠中JUN表达。 JUN以与青光眼损伤中的作用一致的时空模式表达。为了确定JUN在高眼压诱发的RGC死亡中的重要性,将Jun的等位基因和视网膜表达的cre重组酶(Six3-cre)回交到DBA / 2J背景中。评估眼内压(IOP)以及视网膜和视神经头的总体形态,以确定从发育中的视网膜去除Jun是否改变了IOP升高或视网膜的发育。视网膜的Jun缺乏并没有改变DBA / 2J IOP升高或视网膜发育。在已知有DBA / 2J小鼠青光眼损害的年龄评估视神经和视网膜。 Jun缺乏能保护RGC躯体免受眼部高压损伤,但不能保护RGC轴突免受青光眼性神经变性。 Jun是青光眼性眼外伤后RGC体变性的主要调节剂。这些结果表明,在青光眼神经变性中,JNK–JUN信号传导是轴突损伤与体细胞变性之间促死信号传导途径的主要作用。

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