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Hexokinase 2 is dispensable for photoreceptor development but is required for survival during aging and outer retinal stress

机译:六酮酶2可用于感光体发育,但在老化期间存活和外部视网膜应激期间需要

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Photoreceptor death is the ultimate cause of vision loss in many retinal degenerative conditions. Identifying novel therapeutic avenues for prolonging photoreceptor health and function has the potential to improve vision and quality of life for patients suffering from degenerative retinal disorders. Photoreceptors are metabolically unique among other neurons in that they process the majority of their glucose via aerobic glycolysis. One of the main regulators of aerobic glycolysis is hexokinase 2 (HK2). Beyond its enzymatic function of phosphorylating glucose to glucose-6-phosphate, HK2 has additional non-enzymatic roles, including the regulation of apoptotic signaling via AKT signaling. Determining the role of HK2 in photoreceptor homeostasis may identify novel signaling pathways that can be targeted with neuroprotective agents to boost photoreceptor survival during metabolic stress. Here we show that following experimental retinal detachment, p-AKT is upregulated and HK2 translocates to mitochondria. Inhibition of AKT phosphorylation in 661W photoreceptor-like cells results in translocation of mitochondrial HK2 to the cytoplasm, increased caspase activity, and decreased cell viability. Rod-photoreceptors lacking HK2 upregulate HK1 and appear to develop normally. Interestingly, we found that HK2-deficient photoreceptors are more susceptible to acute nutrient deprivation in the experimental retinal detachment model. Additionally, HK2 appears to be important for preserving photoreceptors during aging. We show that retinal glucose metabolism is largely unchanged after HK2 deletion, suggesting that the non-enzymatic role of HK2 is important for maintaining photoreceptor health. These results suggest that HK2 expression is critical for preserving photoreceptors during acute nutrient stress and aging. More specifically, p-AKT mediated translocation of HK2 to the mitochondrial surface may be critical for protecting photoreceptors from acute and chronic stress.
机译:光感受器死亡是许多视网膜退行性条件下视力丧失的最终原因。鉴定用于延长感光体健康和功能的新型治疗途径具有改善患有退行性视网膜障碍的患者的患者的视觉和质量。感光体在其他神经元中是代谢的独特之处在于它们通过有氧糖醇处理它们的大部分葡萄糖。有氧糖酵解的主要调节剂之一是六酮酶2(HK2)。除了磷酸化葡萄糖至葡萄糖-6-磷酸盐的酶促功能之外,HK2具有额外的非酶促作用,包括通过AKT信号传导调节凋亡信号传导。确定HK2在感光体稳态中的作用可以识别可以靶向具有神经保护剂的新型信号通路,以在代谢应力期间提高感光体存活。在这里,我们表明以下实验视网膜脱离,p-akt是上调的,HK2转向线粒体。在661W光感受器样细胞中抑制AKT磷酸化导致线粒体HK2转向细胞质,增加的胱天冬酶活性和降低的细胞活力。缺乏HK2的棒光摄入者上调HK1,似乎正常发展。有趣的是,我们发现HK2缺陷的光感受器在实验视网膜脱离模型中更容易受到急性营养剥夺的影响。此外,HK2似乎很重要,可在老化期间保存光感受器。我们表明,在HK2缺失后,视网膜葡萄糖代谢在很大程度上没有变化,表明HK2的非酶促作用对于保持感光体健康是重要的。这些结果表明,HK2表达对于在急性营养应激和老化期间保持光感受器是至关重要的。更具体地,P-AKT介导的HK2至线粒体表面的易位对于保护感光体免受来自急性和慢性应激的关键来说是至关重要的。

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