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Neuromyelitis Optica IgG Does Not Alter Aquaporin-4 Water Permeability Plasma Membrane M1/M23 Isoform Content or Supramolecular Assembly

机译:神经髓炎Optica IgG不改变水素-4水渗透性血浆膜M1 / M23同种型含量或超分子组件

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摘要

Neuromyelitis optica (NMO) is thought to be caused by immunoglobulin G autoantibodies (NMO-IgG) against astrocyte water channel aquaporin-4 (AQP4). A recent study ( Proc Natl Acad Sci USA 109:1245- 1250) reported that NMO-IgG inhibits AQP4 water permeability directly and causes rapid cellular internalization of the M1 but not M23 isoform of AQP4, resulting in AQP4 clustering, enhanced complement-dependent cytotoxicity, and tissue swelling. Here, we report evidence challenging this proposed mechanism of NMO-IgG-mediated pathology. We measured osmotic water permeability by stopped-flow light scattering on plasma membrane vesicles isolated from AQP4-expressing CHO cells, an approach that can detect changes in water permeability as small as 5% and is not confounded by internalization effects. We found similar single- molecule water permeability for M1-AQP4 tetramers and M23-AQP4 clusters (orthogonal arrays of particles, OAPs). Exposure of AQP4 to high concentrations of NMOIgG from six seropositive NMO patients, and to high-affinity recombinant monoclonal NMO antibodies, did not reduce AQP4 water permeability. Also, NMO-IgG did not reduce water permeability in AQP4-reconstituted proteoliposomes. In transfected cells expressing M1- or M23-AQP4 individually, NMO-IgG caused more rapid internalization of M23- than M1-AQP4. In cells coexpressing both isoforms, M1- and M23-AQP4 comingled in OAPs that were internalized together in response to NMO-IgG. Super-resolution imaging and native gel electrophoresis showed that the size of AQP4 OAPs was not altered by NMO sera or recombinant NMO antibodies. We conclude that NMO-IgG does not: (i) inhibit AQP4 water permeability, (ii) cause preferential internalization of M1-AQP4, or (iii) cause intramembrane AQP4 clustering.
机译:视神经脊髓炎(NMO)被认为是由针对星形胶质细胞水通道Aquaporin-4(AQP4)的免疫球蛋白G自身抗体(NMO-IgG)引起的。最近的一项研究(Proc Natl Acad Sci USA 109:1245-1250)报告说NMO-IgG直接抑制AQP4的水渗透性并引起AQP4的M1但不是M23亚型的快速细胞内在化,从而导致AQP4聚集,增强了补体依赖性细胞毒性和组织肿胀。在这里,我们报告了挑战这一提议的NMO-IgG介导的病理机制的证据。我们通过在从表达AQP4的CHO细胞中分离的质膜囊泡上进行停流光散射来测量渗透水的渗透率,该方法可以检测到小至5%的水渗透率变化,并且不受内部化作用的干扰。我们发现M1-AQP4四聚体和M23-AQP4簇(颗粒的正交阵列,OAP)具有相似的单分子水渗透性。 AQP4暴露于六名血清反应阳性NMO患者的高浓度NMOIgG中,以及高亲和力重组单克隆NMO抗体中,均未降低AQP4的水渗透性。同样,NMO-IgG不会降低AQP4重组蛋白脂质体的水渗透性。在单独表达M1-或M23-AQP4的转染细胞中,NMO-IgG比M1-AQP4引起M23-更快的内在化。在共表达两种同工型的细胞中,M1-和M23-AQP4在OAP中混合在一起,它们响应NMO-IgG而内在化。超分辨率成像和天然凝胶电泳显示,NMO血清或重组NMO抗体不会改变AQP4 OAP的大小。我们得出的结论是,NMO-IgG不会:(i)抑制AQP4的水渗透性,(ii)引起M1-AQP4的优先内部化,或(iii)引起膜内AQP4聚集。

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