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Unfolded protein response is activated in aged retinas

机译:在老年的视网膜中激活展开的蛋白质反应

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An unfolded protein response (UPR) in addition to oxidative stress and the inflammatory response is known to be activated in age-related ocular disorders, such as macular degeneration, diabetic retinopathy, glaucoma, and cataracts. Therefore, we aimed to investigate whether healthy aged retinas display UPR hallmarks, in order to establish a baseline for the activated UPR markers for age-related ocular diseases. Using western blotting, we determined that the hallmarks of the UPR PERK arm, phosphorylated (p) eIF2a, ATF4, and GADD34, were significantly altered in aged vs. young rat retinas. The cleaved pATF6 (50) and CHOP proteins were dramatically upregulated in the aged rodent retinas, indicating the activation of the ATF6 UPR arm. The UPR activation was associated with a drop in rhodopsin expression and in the NRF2 and HO1 levels, suggesting a decline in the anti-oxidant defense in aged retinas. Moreover, we observed down-regulation of anti-inflammatory IL-10 and IL-13 and upregulation of pro-inflammatory RANTES in the healthy aged retinas, as measured using the Bio-plex assay. Our results suggest that cellular homeostasis in normal aged retinas is compromised, resulting in the concomitant activation of the UPR, oxidative stress, and inflammatory signaling. This knowledge brings us closer to understanding the cellular mechanisms of the age-related retinopathies and ocular disorders characterized by an ongoing UPR, and highlight the UPR signaling molecules that should be validated as potential therapeutic targets. Published by Elsevier Ireland Ltd.
机译:除了氧化应激和炎症反应之外,还有一种展开的蛋白质反应(UPR)在年龄相关的眼部疾病中被激活,例如黄斑变性,糖尿病视网膜病变,青光眼和白内障。因此,我们旨在调查健康老化的视网膜展示UPR标志,以便为年龄相关的眼部疾病建立活化UPR标志物的基线。使用Western Blotting,我们确定UPR PERK臂,磷酸化(P)EIF2A,ATF4和GADD34的标志在老年大鼠视网膜中显着改变。切割的Patf6(50)和切碎蛋白在老年啮齿动物视网膜中显着上调,表明ATF6 UPR臂的激活。 UPR活化与罗霉素表达和NRF2和HO1水平下降有关,表明老年视网膜中的抗氧化剂防御的下降。此外,我们观察到抗炎IL-10和IL-13的下调,并在使用生物pox测定测量的健康老年视网膜中的促炎rytes的上调性。我们的研究结果表明,正常老化视网膜中的细胞稳态受到损害,导致UPR,氧化应激和炎症信号传导的伴随激活。这种知识使我们更接近了解由正在进行的UPR的年龄相关视网膜病变和眼部疾病的细胞机制,并突出应验证的UPR信号传导分子作为潜在的治疗目标。由elsevier爱尔兰有限公司出版

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