Jeong Yaeram, Davis Chung-Ha O, Muscarella Aaron, Navarro Hector H, Deshpande Viraj, Moore Lucy G, Kim Keun-Young, Ellisman Mark H, Marsh-Armstrong Nicholas
Department of Ophthalmology and Vision Science, University of California, Davis, Davis, United States.
Neurosciences Program, Stanford University, Stanford, United States.
Elife. 2025 Aug 12;14. doi: 10.7554/eLife.103844.
We previously described a process whereby mitochondria shed by retinal ganglion cell (RGC) axons are transferred to and degraded by surrounding astrocytes in the optic nerve head of mice. Since the mitophagy receptor Optineurin (OPTN) is one of few large-effect glaucoma genes and axonal damage occurs at the optic nerve head in glaucoma, here we explored whether OPTN mutations perturb the transcellular degradation of mitochondria. Live-imaging of optic nerves revealed that diverse human mutant but not wildtype OPTN increase stationary mitochondria and mitophagy machinery and their colocalization within, and in the case of the glaucoma-associated OPTN mutations also outside of, RGC axons. These extra-axonal mitochondria are degraded by astrocytes. Our studies demonstrate that expression of OPTN carrying a glaucoma-associated mutation results in increased transcellular degradation of axonal mitochondria.
我们之前描述了一种过程,即视网膜神经节细胞(RGC)轴突所释放的线粒体被转移至小鼠视神经头周围的星形胶质细胞并由其降解。由于线粒体自噬受体Optineurin(OPTN)是少数几个具有显著效应的青光眼相关基因之一,且青光眼患者的轴突损伤发生在视神经头,因此我们在此探究OPTN突变是否会扰乱线粒体的跨细胞降解。对视神经的实时成像显示,多种人类突变型而非野生型OPTN会增加静止线粒体和线粒体自噬机制及其在RGC轴突内的共定位,并且对于与青光眼相关的OPTN突变而言,还会增加其在RGC轴突外的共定位。这些轴突外的线粒体被星形胶质细胞降解。我们的研究表明,携带青光眼相关突变的OPTN的表达会导致轴突线粒体跨细胞降解增加。