首页> 美国卫生研究院文献>The Journal of Neuroscience >Contactin-Associated Protein (Caspr) and Contactin Form a Complex That Is Targeted to the Paranodal Junctions during Myelination
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Contactin-Associated Protein (Caspr) and Contactin Form a Complex That Is Targeted to the Paranodal Junctions during Myelination

机译:Contactin相关蛋白(Caspr)和Contactin形成一种复合物该复合物在髓鞘形成过程中靶向偏瘫结

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摘要

Specialized paranodal junctions form between the axon and the closely apposed paranodal loops of myelinating glia. They are interposed between sodium channels at the nodes of Ranvier and potassium channels in the juxtaparanodal regions; their precise function and molecular composition have been elusive. We previously reported that Caspr (contactin-associated protein) is a major axonal constituent of these junctions (). We now report that contactin colocalizes and forms a cis complex with Caspr in the paranodes and juxtamesaxon. These proteins coextract and coprecipitate from neurons, myelinating cultures, and myelin preparations enriched in junctional markers; they fractionate on sucrose gradients as a high-molecular-weight complex, suggesting that other proteins may also be associated with this complex. Neurons express two contactin isoforms that differ in their extent of glycosylation: a lower-molecular-weight phosphatidylinositol phospholipase C (PI-PLC)-resistant form is associated specifically with Caspr in the paranodes, whereas a higher-molecular-weight form of contactin, not associated with Caspr, is present in central nodes of Ranvier. These results suggest that the targeting of contactin to different axonal domains may be determined, in part, via its association with Caspr. Treatment of myelinating cocultures of Schwann cells and neurons with RPTPβ–Fc, a soluble construct containing the carbonic anhydrase domain of the receptor protein tyrosine phosphatase β (RPTPβ), a potential glial receptor for contactin, blocks the localization of the Caspr/contactin complex to the paranodes. These results strongly suggest that a preformed complex of Caspr and contactin is targeted to the paranodal junctions via extracellular interactions with myelinating glia.
机译:在轴突和有髓神经胶质的紧密并排的旁结节之间形成专门的旁结交界处。它们介于Ranvier节点处的钠通道与近旁结节区域中的钾通道之间。它们的精确功能和分子组成难以捉摸。我们先前曾报道Caspr(与接触素相关的蛋白质)是这些连接的主要轴突成分()。我们现在报告,contactin与Parapr和近端腋下的Caspr共定位并形成顺式复合体。这些蛋白质从神经元,髓鞘培养物和富含连接标记的髓磷脂制品中共提取和共沉淀。它们以高分子量复合物的形式在蔗糖梯度上分馏,表明其他蛋白质也可能与此复合物相关。神经元表达了两种接触素同工型,它们的糖基化程度不同:旁节段中的Caspr特异性地与低分子量磷脂酰肌醇磷脂酶C(PI-PLC)耐药型有关,而较高分子量的接触素同型, Ranvier的中心节点中存在与Caspr不相关的内容。这些结果表明,接触蛋白对不同轴突结构域的靶向性可以部分地通过其与Caspr的关联来确定。用RPTPβ-Fc处理雪旺氏细胞和神经元的髓鞘共培养物,RPTPβ-Fc是一种可溶性构建体,其中含有受体蛋白酪氨酸磷酸酶β(RPTPβ)的碳酸酐酶结构域,它是接触素的潜在神经胶质受体,可阻止Caspr / contactin复合物定位于超级节点。这些结果强烈表明,Caspr和contactin的预先形成的复合物通过与髓鞘神经胶质的细胞外相互作用而被靶向到旁淋巴结。

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