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A novel human aquaporin-4 splice variant exhibits a dominant-negative activity:a new mechanism to regulate water permeability

机译:新型人类aquaporin-4剪接变体表现出显性负活性:调节水渗透性的新机制

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摘要

Two major isoforms of aquaporin-4 (AQP4) have been described in human tissue. Here we report the identification and functional analysis of an alternatively spliced transcript of human AQP4, AQP4-Δ4, that lacks exon 4. In transfected cells AQP4-Δ4 is mainly retained in the endoplasmic reticulum and shows no water transport properties. When AQP4-Δ4 is transfected into cells stably expressing functional AQP4, the surface expression of the full-length protein is reduced. Furthermore, the water transport activity of the cotransfectants is diminished in comparison to transfectants expressing only AQP4. The observed down-regulation of both the expression and water channel activity of AQP4 is likely to originate from a dominant-negative effect caused by heterodimerization between AQP4 and AQP4-Δ4, which was detected in coimmunoprecipitation studies. In skeletal muscles, AQP4-Δ4 mRNA expression inversely correlates with the level of AQP4 protein and is physiologically associated with different types of skeletal muscles. The expression of AQP4-Δ4 may represent a new regulatory mechanism through which the cell-surface expression and therefore the activity of AQP4 can be physiologically modulated.
机译:在人体组织中已经描述了水通道蛋白4(AQP4)的两种主要同工型。在这里,我们报告缺少外显子4的人AQP4的另一个剪接转录本AQP4-Δ4的鉴定和功能分析。在转染的细胞中,AQP4-Δ4主要保留在内质网中,并且没有水传输特性。当将AQP4-Δ4转染到稳定表达功能性AQP4的细胞中时,全长蛋白的表面表达降低。此外,与仅表达AQP4的转染子相比,共转染子的水运输活性降低。观察到的AQP4表达和水通道活性的下调可能源自AQP4和AQP4-Δ4之间异源二聚化引起的显性负效应,这在免疫共沉淀研究中被发现。在骨骼肌中,AQP4-Δ4mRNA表达与AQP4蛋白水平成反比,并且在生理上与不同类型的骨骼肌相关。 AQP4-Δ4的表达可能代表了一种新的调节机制,通过该机制,可以在生理上调节细胞表面的表达,从而调节AQP4的活性。

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