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Specific Contactin N-Glycans Are Implicated in Neurofascin Binding and Autoimmune Targeting in Peripheral Neuropathies

机译:特定的contactin N糖类涉及神经钙蛋白结合和周围神经病的自身免疫靶向。

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摘要

Cell adhesion molecules (CAMs) play a crucial role in the formation of the nodes of Ranvier and in the rapid propagation of the nerve impulses along myelinated axons. These CAMs are the targets of autoimmunity in inflammatory neuropathies. We recently showed that a subgroup of patients with aggressive chronic inflammatory demyelinating polyradiculoneuropathy (CIDP) shows autoantibodies to contactin (). The complex of contactin·Caspr·neurofascin-155 (NF155) enables the formation of paranodal junctions, suggesting that antibody attack against paranodes may participate in the severity of CIDP. In the present study, we mapped the molecular determinants of contactin targeted by the autoantibodies. In three patients, immunoreactivity was directed against the Ig domains of contactin and was dependent on N-glycans. The serum of one patient was selectively directed against contactin bearing mannose-rich N-glycans. Strikingly, the oligomannose type sugars of contactin are required for association with its glial partner NF155 (). To investigate precisely the role of contactin N-glycans, we have mutated each of the nine consensus N-glycosylation sites independently. We found that the mutation of three sites (N467Q/N473Q/N494Q) in Ig domain 5 of contactin prevented soluble NF155-Fc binding. In contrast, these mutations did not abolish cis-association with Caspr. Next, we showed that the cluster of N-glycosylation sites (Asn-467, Asn-473, and Asn-494) was required for immunoreactivity in one patient. Using cell aggregation assays, we showed that the IgGs from the four CIDP patients prevented adhesive interaction between contactin·Caspr and NF155. Importantly, we showed that the anti-contactin autoantibodies induced alteration of paranodal junctions in myelinated neuronal culture. These results strongly suggest that antibodies to CAMs may be pathogenic and induce demyelination via functional blocking activity.
机译:细胞粘附分子(CAM)在Ranvier结节的形成以及神经冲动沿着有髓轴突的快速传播中起着至关重要的作用。这些CAM是炎性神经病中自身免疫的靶标。我们最近显示,患有侵略性慢性炎性脱髓鞘性多发性神经根神经病(CIDP)的患者亚组显示出针对contactin()的自身抗体。 contactin·Caspr·neurofascin-155(NF155)的复合物能够形成结节旁连接,这表明针对结节的抗体攻击可能参与了CIDP的严重性。在本研究中,我们绘制了自身抗体靶向的接触素的分子决定簇。在三名患者中,免疫反应性针对的是接触素的Ig结构域,并且依赖于N-聚糖。一名患者的血清被选择性地针对带有接触素的富含甘露糖的N-聚糖。令人惊讶的是,接触素的低聚甘露糖型糖与其神经胶质伴侣NF155()结合在一起是必需的。为了精确研究contactin N-聚糖的作用,我们独立地突变了9个共有N-糖基化位点。我们发现在接触素的Ig结构域5中的三个位点(N467Q / N473Q / N494Q)的突变阻止了可溶性NF155-Fc的结合。相反,这些突变并未消除与Caspr的顺式缔合。接下来,我们显示了一组N-糖基化位点(Asn-467,Asn-473和Asn-494)对于患者的免疫反应是必需的。使用细胞聚集测定法,我们显示了来自四名CIDP患者的IgG阻止了contactin·Caspr和NF155之间的粘附相互作用。重要的是,我们证明了抗接触素自身抗体在有髓神经元培养物中诱导了旁淋巴结的改变。这些结果强烈暗示针对CAM的抗体可能是致病性的,并通过功能阻断活性诱导脱髓鞘作用。

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