Department of Medicine, University of California, San Francisco, California 94143-0521, USA.
Glia. 2011 Jul;59(7):1056-63. doi: 10.1002/glia.21177. Epub 2011 Apr 12.
Water channel aquaporin-4 (AQP4) is expressed in astrocytes throughout brain and spinal cord. Two major AQP4 isoforms are expressed, M1 and M23, having different translation initiation sites. A longer isoform (Mz) has been reported in rat with translation initiation 126-bp upstream from that of M1. By immunoblot analysis of SDS and native gels probed with a C-terminus anti-AQP4 antibody, Mz was detected in rat brain as a distinct band of size ∼39 kDa. Mz was absent in human and mouse brain because of in-frame stop codons. The ability of rat Mz to form orthogonal arrays of particles (OAPs) was investigated by single particle tracking and native gel electrophoresis. We found that Mz, like M1, diffused rapidly in the cell plasma membrane and did not form OAPs. However, when co-expressed with M23, Mz associated in OAPs by forming heterotetramers with M23. Unexpectedly, Mz-expressing cells bound neuromyelitis optica autoantibodies (NMO-IgG) poorly, <5-fold compared with M1-expressing cells. Truncation analysis suggested that the poor NMO-IgG binding to Mz involves residues 31-41 upstream of Met-1. We conclude that Mz AQP4 is (a) present at low level in rat but not human or mouse brain, (b) unable to form OAPs on its own but able to associate with M23 AQP4 in heterotetramers, and (c) largely unable to bind NMO-IgG because of N-terminus effects on the structure of the AQP4/NMO-IgG binding site.
水通道蛋白 aquaporin-4(AQP4)在脑和脊髓的星形胶质细胞中表达。有两种主要的 AQP4 同工型表达,M1 和 M23,它们具有不同的翻译起始位点。在大鼠中已经报道了一种较长的同工型(Mz),其翻译起始位点比 M1 上游 126 个碱基。通过 SDS 和天然凝胶的免疫印迹分析,用 C 末端抗 AQP4 抗体探测,在大鼠脑中检测到 Mz 是一种大小约为 39 kDa 的独特带。由于框架内的终止密码子,Mz 在人和小鼠脑中不存在。通过单颗粒跟踪和天然凝胶电泳研究了大鼠 Mz 形成正交排列颗粒(OAPs)的能力。我们发现 Mz 像 M1 一样,在细胞质膜中快速扩散,并且不形成 OAPs。然而,当与 M23 共表达时,Mz 通过与 M23 形成异四聚体而在 OAPs 中结合。出乎意料的是,表达 Mz 的细胞与视神经脊髓炎自身抗体(NMO-IgG)的结合能力很差,与表达 M1 的细胞相比,<5 倍。截断分析表明,Mz 与 NMO-IgG 的结合能力差涉及到 Met-1 上游的 31-41 个残基。我们得出结论,Mz AQP4 是(a)在大鼠中低水平存在,但在人和小鼠脑中不存在,(b)不能独立形成 OAPs,但能够与 M23 AQP4 形成异四聚体,(c)由于 N 末端对 AQP4/NMO-IgG 结合位点结构的影响,很大程度上不能与 NMO-IgG 结合。