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视神经脊髓炎自身抗体与水通道蛋白-4 M1/M23 异构体和正交阵列的结合亲和力和特异性。

Binding affinity and specificity of neuromyelitis optica autoantibodies to aquaporin-4 M1/M23 isoforms and orthogonal arrays.

机构信息

Department of Medicine, University of California, San Francisco, California 94143, USA.

出版信息

J Biol Chem. 2011 May 6;286(18):16516-24. doi: 10.1074/jbc.M111.227298. Epub 2011 Mar 21.

Abstract

Autoantibodies against astrocyte water channel aquaporin-4 (AQP4) are highly specific for the neuroinflammatory disease neuromyelitis optica (NMO). We measured the binding of NMO autoantibodies to AQP4 in human astrocyte-derived U87MG cells expressing M1 and/or M23 AQP4, or M23 mutants that do not form orthogonal array of particles (OAPs). Binding affinity was quantified by two-color fluorescence ratio imaging of cells stained with NMO serum or a recombinant monoclonal NMO autoantibody (NMO-rAb), together with a C terminus anti-AQP4 antibody. NMO-rAb titrations showed binding with dissociation constants down to 44 ± 7 nm. Different NMO-rAbs and NMO patient sera showed a wide variation in NMO-IgG binding to M1 versus M23 AQP4. Differences in binding affinity rather than stoichiometry accounted for M1 versus M23 binding specificity, with consistently greater affinity of NMO-IgG binding to M23 than M1 AQP4. Binding and OAP measurements in cells expressing different M1:M23 ratios or AQP4 mutants indicated that the differential binding of NMO-IgG to M1 versus M23 was due to OAP assembly rather than to differences in the M1 versus M23 N termini. Purified Fab fragments of NMO-IgG showed similar patterns of AQP4 isoform binding, indicating that structural changes in the AQP4 epitope upon array assembly, and not bivalent cross-linking of whole IgG, result in the greater binding affinity to OAPs. Our study establishes a quantitative assay of NMO-IgG binding to AQP4 and indicates remarkable, OAP-dependent heterogeneity in NMO autoantibody binding specificity.

摘要

抗星形胶质细胞水通道 aquaporin-4(AQP4)自身抗体对神经炎症性疾病视神经脊髓炎(NMO)具有高度特异性。我们测量了在表达 M1 和/或 M23 AQP4 的人星形胶质细胞源性 U87MG 细胞中,NMO 自身抗体与 AQP4 的结合,或不形成正交排列颗粒(OAPs)的 M23 突变体。通过用 NMO 血清或重组单克隆 NMO 自身抗体(NMO-rAb)与 C 末端抗 AQP4 抗体染色的细胞的双色荧光比成像定量结合亲和力。NMO-rAb 滴定显示结合解离常数低至 44 ± 7nm。不同的 NMO-rAbs 和 NMO 患者血清在 NMO-IgG 与 M1 与 M23 AQP4 的结合方面表现出广泛的变化。结合亲和力而不是化学计量学差异解释了 M1 与 M23 的结合特异性,NMO-IgG 与 M23 AQP4 的结合亲和力始终大于 M1 AQP4。在表达不同 M1:M23 比或 AQP4 突变体的细胞中进行的结合和 OAP 测量表明,NMO-IgG 对 M1 与 M23 的差异结合归因于 OAP 组装,而不是 M1 与 M23 N 末端的差异。NMO-IgG 的纯化 Fab 片段显示出类似的 AQP4 同工型结合模式,表明在阵列组装时 AQP4 表位发生结构变化,而不是整个 IgG 的二价交联,导致与 OAP 结合的亲和力更大。我们的研究建立了一种定量测定 NMO-IgG 与 AQP4 结合的方法,并表明 NMO 自身抗体结合特异性存在显著的、依赖 OAP 的异质性。

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