Department of Physiology and Pharmacology, Hotchkiss Brain Institute and Alberta Children's Hospital Research Institute, Cumming School of Medicine, University of Calgary, 3330 Hospital Dr. NW, Calgary, T2N 4N1, Canada.
Michael Smith Laboratories and Djavad Mowafaghian Centre for Brain Health, University of British Colombia, Vancouver, BC, Canada.
Mol Brain. 2018 May 2;11(1):24. doi: 10.1186/s13041-018-0368-5.
This study describes the functional interaction between the Cav3.1 and Cav3.2 T-type calcium channels and cytoskeletal spectrin (α/β) and ankyrin B proteins. The interactions were identified utilizing a proteomic approach to identify proteins that interact with a conserved negatively charged cytosolic region present in the carboxy-terminus of T-type calcium channels. Deletion of this stretch of amino acids decreased binding of Cav3.1 and Cav3.2 calcium channels to spectrin (α/β) and ankyrin B and notably also reduced T-type whole cell current densities in expression systems. Furthermore, fluorescence recovery after photobleaching analysis of mutant channels lacking the proximal C-terminus region revealed reduced recovery of both Cav3.1 and Cav3.2 mutant channels in hippocampal neurons. Knockdown of spectrin α and ankyrin B decreased the density of endogenous Cav3.2 in hippocampal neurons. These findings reveal spectrin (α/β) / ankyrin B cytoskeletal and signaling proteins as key regulators of T-type calcium channels expressed in the nervous system.
本研究描述了 Cav3.1 和 Cav3.2 T 型钙通道与细胞骨架血影蛋白(α/β)和锚蛋白 B 蛋白之间的功能相互作用。利用蛋白质组学方法鉴定与 T 型钙通道羧基末端存在的保守带负电荷胞质区域相互作用的蛋白质,从而鉴定出这些相互作用。该氨基酸片段的缺失降低了 Cav3.1 和 Cav3.2 钙通道与血影蛋白(α/β)和锚蛋白 B 的结合,并且显著降低了表达系统中 T 型全细胞电流密度。此外,缺乏近端 C 末端区域的突变通道的荧光恢复后光漂白分析表明,在海马神经元中,两种 Cav3.1 和 Cav3.2 突变通道的恢复均减少。血影蛋白 α 和锚蛋白 B 的敲低降低了海马神经元中内源性 Cav3.2 的密度。这些发现揭示了血影蛋白(α/β)/锚蛋白 B 细胞骨架和信号蛋白是神经系统中表达的 T 型钙通道的关键调节剂。