Martin Pierre-Marie, Cifuentes-Diaz Carmen, Devaux Jérôme, Garcia Marta, Bureau Jocelyne, Thomasseau Sylvie, Klingler Esther, Girault Jean-Antoine, Goutebroze Laurence
From INSERM, UMR-S 839, F-75005 Paris.
the Université Pierre et Marie Curie (UPMC)-Sorbonne Universités, UMR-S 839, 75005 Paris.
J Biol Chem. 2017 Feb 10;292(6):2441-2456. doi: 10.1074/jbc.M116.758029. Epub 2016 Dec 15.
The nodes of Ranvier are essential regions for action potential conduction in myelinated fibers. They are enriched in multimolecular complexes composed of voltage-gated Nav and Kv7 channels associated with cell adhesion molecules. Cytoskeletal proteins ankyrin-G (AnkG) and βIV-spectrin control the organization of these complexes and provide mechanical support to the plasma membrane. IQCJ-SCHIP1 is a cytoplasmic protein present in axon initial segments and nodes of Ranvier. It interacts with AnkG and is absent from nodes and axon initial segments of βIV-spectrin and AnkG mutant mice. Here, we show that IQCJ-SCHIP1 also interacts with βIV-spectrin and Kv7.2/3 channels and self-associates, suggesting a scaffolding role in organizing nodal proteins. IQCJ-SCHIP1 binding requires a βIV-spectrin-specific domain and Kv7 channel 1-5-10 calmodulin-binding motifs. We then investigate the role of IQCJ-SCHIP1 by studying peripheral myelinated fibers in knock-out mutant mice. The major nodal proteins are normally enriched at nodes in these mice, indicating that IQCJ-SCHIP1 is not required for their nodal accumulation. However, morphometric and ultrastructural analyses show an altered shape of nodes similar to that observed in βIV-spectrin mutant mice, revealing that IQCJ-SCHIP1 contributes to nodal membrane-associated cytoskeleton organization, likely through its interactions with the AnkG/βIV-spectrin network. Our work reveals that IQCJ-SCHIP1 interacts with several major nodal proteins, and we suggest that it contributes to a higher organizational level of the AnkG/βIV-spectrin network critical for node integrity.
郎飞结是有髓纤维中动作电位传导的关键区域。它们富含由电压门控的Nav和Kv7通道与细胞黏附分子组成的多分子复合物。细胞骨架蛋白锚蛋白G(AnkG)和βIV-血影蛋白控制这些复合物的组织,并为质膜提供机械支持。IQCJ-SCHIP1是一种存在于轴突起始段和郎飞结的胞质蛋白。它与AnkG相互作用,在βIV-血影蛋白和AnkG突变小鼠的结和轴突起始段中不存在。在这里,我们表明IQCJ-SCHIP1也与βIV-血影蛋白和Kv7.2/3通道相互作用并自我缔合,表明其在组织节点蛋白中起支架作用。IQCJ-SCHIP1的结合需要一个βIV-血影蛋白特异性结构域和Kv7通道1-5-10钙调蛋白结合基序。然后,我们通过研究基因敲除突变小鼠的外周有髓纤维来探究IQCJ-SCHIP1的作用。在这些小鼠中,主要的节点蛋白通常在节点处富集,这表明IQCJ-SCHIP1不是它们在节点处积累所必需的。然而,形态计量学和超微结构分析显示节点形状改变,类似于在βIV-血影蛋白突变小鼠中观察到的情况,这表明IQCJ-SCHIP1可能通过其与AnkG/βIV-血影蛋白网络的相互作用,有助于与节点膜相关的细胞骨架组织。我们的工作表明IQCJ-SCHIP1与几种主要的节点蛋白相互作用,并且我们认为它有助于AnkG/βIV-血影蛋白网络达到更高的组织水平,这对节点完整性至关重要。