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Tissue Distribution of the Readthrough Isoform of AQP4 Reveals a Dual Role of AQP4ex Limited to CNS

机译:AQP4的读取同种型的组织分布显示AQP4EX限制为CNS的双重作用

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Translational readthrough (TRT) of aquaporin-4 (AQP4) has remarkably expanded the importance of this new post-transcriptional mechanism, as well as the regulation potential of AQP4. The TRT isoform of AQP4, named AQP4ex, is central for both AQP4 polarization and water channel activity in the central nervous system (CNS). Here we evaluate the relevance of the TRT mechanism by analyzing whether AQP4ex is also expressed in peripheral tissues and whether the expression of AQP4ex is necessary for its polarized expression as it occurs in perivascular astrocyte processes. To this purpose, AQP4ex null mice were used, and analysis was performed by immunolocalization and immunoblot. The results demonstrate that AQP4ex is expressed in kidney, stomach, trachea and skeletal muscle with the same localization pattern as the canonical AQP4 isoforms. AQP4ex protein levels vary from 6% to about 13% of the total AQP4 protein levels in peripheral tissues. Immunogold electron microscopy experiments demonstrated the localization of AQP4ex at the astrocytic endfeet, and experiments conducted on AQP4ex null mice CNS confirmed that the expression of AQP4ex is necessary for anchoring of the perivascular AQP4. Without the readthrough isoform, AQP4 assemblies are mis-localized, being uniformly distributed on the astrocyte processes facing the neuropile. No alteration of AQP4 polarization was found in AQP4ex null kidney, stomach, trachea or skeletal muscle, suggesting that AQP4ex does not have a role for proper membrane localization of AQP4 in peripheral tissues. We conclude that a dual role for AQP4ex is limited to the CNS.
机译:Aquaporin-4(AQP4)的平移推录(TRT)显着扩大了这种新的转录机制的重要性,以及AQP4的调节潜力。 AQP4的TRT同种型命名为AQP4EX,是中枢神经系统(CNS)中AQP4偏振和水道活动的中心。在这里,我们通过分析AQP4EX在外周组织中是否表达并在其偏振星形细胞过程中出现的偏振表达是必要的,评估TRT机制的相关性。为此目的,使用AQP4ex零小鼠,通过免疫致橡胶和免疫印迹进行分析。结果表明,AQP4EX以肾脏,胃,气管和骨骼肌表达,具有与规范AQP4同种型相同的定位模式。 AQP4ex蛋白水平在外周组织中AQP4蛋白水平总量的6%至约13%。免疫电解电子显微镜实验证明了AQP4EX在星形胶质细胞末端的定位,并且在AQP4EX零小鼠CNS上进行的实验证实,AQP4EX的表达是锚定血管血管静脉AQP4所必需的。没有读取同种型,AQP4组件被错误定位,均匀地分布在面向神经疏松的星形胶质细胞过程中。在AQP4EX NULL肾,胃,气管或骨骼肌中没有发现AQP4偏振的改变,表明AQP4EX在外周组织中AQP4的适当膜定位没有作用。我们得出结论,AQP4EX的双重作用仅限于CNS。

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