Role of a Contactin multi-molecular complex secreted by oligodendrocytes in nodal protein clustering in the CNS

少突胶质细胞分泌的接触蛋白多分子复合物在中枢神经系统节点蛋白聚集中的作用

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作者:Anne-Laure Dubessy, Elisa Mazuir, Quentin Rappeneau, Sokounthie Ou, Charly Abi Ghanem, Kevin Piquand, Marie-Stéphane Aigrot, Melina Thétiot, Anne Desmazières, Eric Chan, Matt Fitzgibbon, Mark Fleming, Raul Krauss, Bernard Zalc, Barbara Ranscht, Catherine Lubetzki, Nathalie Sol-Foulon

Abstract

The fast and reliable propagation of action potentials along myelinated fibers relies on the clustering of voltage-gated sodium channels at nodes of Ranvier. Axo-glial communication is required for assembly of nodal proteins in the central nervous system, yet the underlying mechanisms remain poorly understood. Oligodendrocytes are known to support node of Ranvier assembly through paranodal junction formation. In addition, the formation of early nodal protein clusters (or prenodes) along axons prior to myelination has been reported, and can be induced by oligodendrocyte conditioned medium (OCM). Our recent work on cultured hippocampal neurons showed that OCM-induced prenodes are associated with an increased conduction velocity (Freeman et al., 2015). We here unravel the nature of the oligodendroglial secreted factors. Mass spectrometry analysis of OCM identified several candidate proteins (i.e., Contactin-1, ChL1, NrCAM, Noelin2, RPTP/Phosphacan, and Tenascin-R). We show that Contactin-1 combined with RPTP/Phosphacan or Tenascin-R induces clusters of nodal proteins along hippocampal GABAergic axons. Furthermore, Contactin-1-immunodepleted OCM or OCM from Cntn1-null mice display significantly reduced clustering activity, that is restored by addition of soluble Contactin-1. Altogether, our results identify Contactin-1 secreted by oligodendrocytes as a novel factor that may influence early steps of nodal sodium channel cluster formation along specific axon populations.

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