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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Lysosomal degradation of retinal glial AQP4 following its internalization induced by acute ocular hypertension
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Lysosomal degradation of retinal glial AQP4 following its internalization induced by acute ocular hypertension

机译:急性高眼压诱发视网膜胶质细胞AQP4内在化后的溶酶体降解

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摘要

The membrane-bound water channel aquaporin-4 plays a significant role in the regulation of water movement within the retina. In retinal ischemia-reperfusion injury, changes in the expression and localization of aquaporin-4 have been reported. Previous studies also suggest that the internalization of several membrane-bound proteins, including aquaporin-4, may occur with or without lysosomal degradation. In this study, the internalization of aquaporin-4 was detected in the ischemic rat retina via double immunofluorescence labeling. Specifically, both aquaporin-4 and the mannose-6-phosphate receptor co-localized post-ischemic injury (10, 30 and 60. min). The same results were found during a 12-h reperfusion window (2, 4 and 8. h, respectively) following 60. min of ischemia. Moreover, the co-expression of aquaporin-4 and lysosomal-associated membrane protein-1 was observed at 1-12. h of reperfusion, with co-expression increasing followed by a gradual decrease. These combined findings suggest that AQP4 is internalized in the ischemic-reperfused retina, and the lysosome is involved in degrading the internalized aquaporin-4 during the reperfusion phase. Both the internalization of aquaporin-4 and its lysosomal degradation may serve as valuable therapeutic targets for managing ischemic-reperfused retinal injury.
机译:膜结合水通道aquaporin-4在调节视网膜内水的运动中起重要作用。在视网膜缺血-再灌注损伤中,已经报道了aquaporin-4表达和定位的改变。先前的研究还表明,无论是否存在溶酶体降解,几种膜结合蛋白(包括aquaporin-4)的内在化都可能发生。在这项研究中,通过双重免疫荧光标记在缺血性大鼠视网膜中检测到aquaporin-4的内在化。具体而言,aquaporin-4和甘露糖6-磷酸受体均共同定位于缺血后损伤(10、30和60分钟)。缺血60分钟后的12小时再灌注窗口(分别为2、4和8小时)发现了相同的结果。此外,在1-12时观察到水通道蛋白4和溶酶体相关膜蛋白-1的共表达。 h再灌注,共表达增加,随后逐渐减少。这些综合的发现表明,AQP4在缺血再灌注视网膜中被内在化,而溶酶体参与了再灌注期降解内在化的aquaporin-4。 Aquaporin-4的内在化及其溶酶体降解均可作为处理缺血性再灌注视网膜损伤的有价值的治疗靶标。

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