首页> 外文期刊>The Journal of biological chemistry >Evidences for a leaky scanning mechanism for the synthesis of the shorter M23 protein isoform of aquaporin-4: implication in orthogonal array formation and neuromyelitis optica antibody interaction.
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Evidences for a leaky scanning mechanism for the synthesis of the shorter M23 protein isoform of aquaporin-4: implication in orthogonal array formation and neuromyelitis optica antibody interaction.

机译:水通道蛋白-4 较短的 M23 蛋白亚型合成的泄漏扫描机制的证据:在正交阵列形成和视神经脊髓炎抗体相互作用中的意义。

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Aquaporin-4 (AQP4) exists as two major isoforms that differ in the length of the N terminus, the shorter AQP4-M23 and the longer AQP4-M1. Both isoforms form tetramers, which can further aggregate in the plasma membrane to form typical orthogonal arrays of particles (OAPs) whose dimension depends on the ratio of the M1 and M23. In this study, we tested the hypothesis that the M23 isoform can be produced directly by the M1 mRNA. In cells transiently transfected with AQP4-M1 coding sequence we observed besides AQP4-M1 the additional presence of the AQP4-M23 isoform associated with the formation of typical OAPs observable by two-dimensional blue native/SDS-PAGE and total internal reflection microscopy. The mutation of the second in-frame methionine M23 in AQP4-M1 (AQP4-M1(M23I)) prevented the expression of the M23 isoform and the formation of OAPs. We propose leaky scanning protein isoform and that the formation of OAPs may occur even in the absence of AQP4-M23 mRNA. This mechanism can have important pathophysiological implications for the cell regulation of the M1/M23 ratio and thus OAP size. In this study we also provide evidence that AQP4-M1 is mobile in the plasma membrane, that it is inserted and not excluded into immobile OAPs, and that it is an important determinant of OAP structure and size.
机译:水通道蛋白-4 (AQP4) 作为两种主要亚型存在,它们的 N 末端长度不同,即较短的 AQP4-M23 和较长的 AQP4-M1。两种亚型都形成四聚体,四聚体可以进一步聚集在质膜中形成典型的正交颗粒阵列 (OAP),其尺寸取决于 M1 和 M23 的比例。在这项研究中,我们检验了 M23 亚型可以由 M1 mRNA 直接产生的假设。在瞬时转染 AQP4-M1 编码序列的细胞中,我们观察到除了 AQP4-M1 之外,还存在与典型 OAP 形成相关的 AQP4-M23 亚型,可通过二维蓝色天然/SDS-PAGE 和全内反射显微镜观察到。AQP4-M1 (AQP4-M1(M23I)) 中第二个框内蛋氨酸 M23 的突变阻止了 M23 亚型的表达和 OAP 的形成。我们提出了渗漏扫描蛋白亚型,即使在没有 AQP4-M23 mRNA 的情况下也可能发生 OAP 的形成。这种机制可能对 M1/M23 比率的细胞调节以及 OAP 大小具有重要的病理生理学意义。在这项研究中,我们还提供了证据,证明 AQP4-M1 在质膜中是可移动的,它入并且没有被排除在不动的 OAP 中,并且它是 OAP 结构和大小的重要决定因素。

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