Walther-Straub-Institute for Pharmacology and Toxicology, Ludwig-Maximilians University, 80336 Munich, Germany.
J Biol Chem. 2012 Jan 27;287(5):3530-40. doi: 10.1074/jbc.M111.283218. Epub 2011 Dec 8.
Specific biological roles of the classical transient receptor potential channel 1 (TRPC1) are still largely elusive. To investigate the function of TRPC1 proteins in cell physiology, we studied heterologously expressed TRPC1 channels and found that recombinant TRPC1 subunits do not form functional homomeric channels. Instead, by electrophysiological analysis TRPC1 was shown to form functional heteromeric, receptor-operated channel complexes with TRPC3, -4, -5, -6, and -7 indicating that TRPC1 proteins can co-assemble with all members of the TRPC subfamily. In all TRPC1-containing heteromers, TRPC1 subunits significantly decreased calcium permeation. The exchange of select amino acids in the putative pore-forming region of TRPC1 further reduced calcium permeability, suggesting that TRPC1 subunits contribute to the channel pore. In immortalized immature gonadotropin-releasing hormone neurons endogenously expressing TRPC1, -2, -5, and -6, down-regulation of TRPC1 resulted in increased calcium permeability and elevated basal cytosolic calcium concentrations. We did not observe any involvement of TRPC1 in store-operated cation influx. Notably, TRPC1 suppressed the migration of gonadotropin-releasing hormone neurons without affecting cell proliferation. Conversely, in TRPC1 knockdown neurons, specific migratory properties like distance covered, locomotion speed, and directionality were increased. These findings suggest a novel regulatory mechanism relying on the expression of TRPC1 and the subsequent formation of heteromeric TRPC channel complexes with reduced calcium permeability, thereby fine-tuning neuronal migration.
经典瞬时受体电位通道 1(TRPC1)的具体生物学功能仍很大程度上难以捉摸。为了研究 TRPC1 蛋白在细胞生理学中的功能,我们研究了异源表达的 TRPC1 通道,发现重组 TRPC1 亚基不能形成功能性同型通道。相反,通过电生理分析表明,TRPC1 与 TRPC3、-4、-5、-6 和 -7 形成功能性异源、受体操纵的通道复合物,表明 TRPC1 蛋白可以与 TRPC 亚家族的所有成员共同组装。在所有含有 TRPC1 的异源二聚体中,TRPC1 亚基显著降低了钙离子通透性。TRPC1 中假定的孔形成区域的选择性氨基酸交换进一步降低了钙通透性,表明 TRPC1 亚基有助于通道孔。在表达内源性 TRPC1、-2、-5 和 -6 的未成熟促性腺激素释放激素神经元中,TRPC1 的下调导致钙通透性增加和基础细胞浆钙浓度升高。我们没有观察到 TRPC1 参与储存操作的阳离子内流。值得注意的是,TRPC1 抑制促性腺激素释放激素神经元的迁移,而不影响细胞增殖。相反,在 TRPC1 敲低神经元中,特定的迁移特性,如覆盖的距离、运动速度和方向性增加。这些发现表明了一种依赖于 TRPC1 表达和随后形成具有降低钙通透性的异源 TRPC 通道复合物的新型调节机制,从而精细调节神经元迁移。