Ying Qian, Luo Hongdou, Xie Zhi, Huang Yi, Hu Haijian, Jin Ming, Xu Ke, Pang Yulian, Song Yuning, Zhang Xu
Affiliated Eye Hospital of Nanchang University, Jiangxi Research Institute of Ophthalmology and Visual Science, Jiangxi Provincial Key Laboratory for Ophthalmology, Jiangxi Clinical Research Center for Ophthalmic Disease, Nanchang, China.
Xingguo Hospital Affiliated to Gannan Medical University, Xingguo, China.
Invest Ophthalmol Vis Sci. 2025 Jan 2;66(1):62. doi: 10.1167/iovs.66.1.62.
This study aimed to investigate the role of SIRT4 in retinal protection, specifically its ability to mitigate excitotoxic damage to Müller glial cells through the regulation of mitochondrial dynamics and glutamate transporters (GLASTs).
A model of retinal excitatory neurotoxicity was established in mice. Proteins related to mitochondrial dynamics, GLAST, and SIRT4 were analyzed on days 0, 1, 3, and 5 following toxic injury. The influence of SIRT4 on mitochondrial dynamics-related proteins and GLAST was examined by inducing SIRT4 overexpression through intraperitoneal injection of resveratrol or by using SIRT4 knockout (KO) mice. Additionally, the effects of upregulating and downregulating SIRT4 expression in rat Müller glial cell lines (rMC-1) were explored via lentiviral vector transfection to assess changes in mitochondrial morphology and GLAST expression.
After excitotoxic injury to the mouse retina, the retinal thickness and structure were disrupted, the number of retinal ganglion cells (RGCs) decreased, and Müller glial cells were activated by day 1. The levels of OPA1, GLAST, and SIRT4 proteins peaked on the first day after injury and then gradually decreased, indicating a synchronized dynamic trend. The upregulation of SIRT4 expression promoted OPA1 and GLAST protein expression, thereby alleviating retinal excitotoxic injury. Furthermore, the upregulation of SIRT4 expression promoted mitochondrial fusion and increased GLAST expression in rMC-1 cells, reducing cellular excitotoxic damage. Conversely, downregulation of SIRT4 had the opposite effect.
SIRT4 plays a significant role in mitigating excitotoxic damage in the retina, modulating Müller glial cell injury by regulating mitochondrial dynamics and glutamate transporter expression, ultimately influencing retinal health.
本研究旨在探讨SIRT4在视网膜保护中的作用,特别是其通过调节线粒体动力学和谷氨酸转运体(GLASTs)减轻对 Müller 胶质细胞兴奋性毒性损伤的能力。
在小鼠中建立视网膜兴奋性神经毒性模型。在毒性损伤后的第0、1、3和5天分析与线粒体动力学、GLAST和SIRT4相关的蛋白质。通过腹腔注射白藜芦醇诱导SIRT4过表达或使用SIRT4基因敲除(KO)小鼠来检测SIRT4对线粒体动力学相关蛋白和GLAST的影响。此外,通过慢病毒载体转染探索上调和下调大鼠Müller胶质细胞系(rMC-1)中SIRT4表达的效果,以评估线粒体形态和GLAST表达的变化。
小鼠视网膜受到兴奋性毒性损伤后,视网膜厚度和结构遭到破坏,视网膜神经节细胞(RGCs)数量减少,到第1天时Müller胶质细胞被激活。OPA1、GLAST和SIRT4蛋白水平在损伤后的第一天达到峰值,然后逐渐下降,呈现同步动态趋势。SIRT4表达上调促进了OPA1和GLAST蛋白表达,从而减轻了视网膜兴奋性毒性损伤。此外,SIRT4表达上调促进了rMC-1细胞中的线粒体融合并增加了GLAST表达,减少了细胞兴奋性毒性损伤。相反,SIRT4下调则产生相反的效果。
SIRT4在减轻视网膜兴奋性毒性损伤中起重要作用,通过调节线粒体动力学和谷氨酸转运体表达来调节Müller胶质细胞损伤,最终影响视网膜健康。