Department of Chemistry, Korea Advanced Institute of Science and Technology, Daejeon, 305-701, Republic of Korea.
Pflugers Arch. 2014 Mar;466(3):491-504. doi: 10.1007/s00424-013-1332-y. Epub 2013 Aug 16.
Transient receptor potential canonical (TRPC) 1, the first mammalian homologue of Drosophila trp gene, is distributed widely in mammalian cells and is involved in many physiological functions. TRPC1 is reported to be functional following heteromeric formation with other TRPC channels such as TRPC4 or TRPC5. It is known that the composition of this widely distributed TRPC1 is far from simple; functionality of such channels has been highly controversial. Furthermore, TRPC1 gene is known to have two splicing variants; one encodes long (TRPC1α) and the other encodes short (TRPC1β) TRPC1 isoforms, respectively. In this study, we examined the functionality of TRPC1/4 channels using various activation systems. Gq/11-coupled receptor (e.g., M1 or M3 receptors) stimulation significantly increased TRPC1α/4 currents but induced mild activation of TRPC1β/4. In addition, when expressed with TRPC4, TRPC1α acted as a pore-constituting subunit and not a β ancillary subunit. Multimerized with TRPC4, TRPC1α also generated strong pore field strength. We also found that Gi/o-coupled receptor (e.g., M2 receptor) stimulation was insufficient to activate TRPC1α/4 and TRPC1β/4 channels but selectively activated TRPC4 homomeric channels. These findings demonstrate that TRPC1/4 channel shows dynamic gating property depending on TRPC1 isoform subtypes and receptor stimulation system. Therefore, careful discrimination of the specificity of TRPC1 isoforms and upstream activation system is important in thorough understanding of TRPC1 and TRPC1/4 channels.
瞬时受体电位经典型 (TRPC) 1 是果蝇 trp 基因的第一个哺乳动物同源物,广泛分布于哺乳动物细胞中,参与许多生理功能。据报道,TRPC1 与其他 TRPC 通道(如 TRPC4 或 TRPC5)形成异源二聚体后具有功能。已知这种广泛分布的 TRPC1 的组成远非简单;这些通道的功能一直存在很大争议。此外,TRPC1 基因已知有两个剪接变体;一个编码长(TRPC1α),另一个编码短(TRPC1β)TRPC1 同工型。在这项研究中,我们使用各种激活系统检查了 TRPC1/4 通道的功能。Gq/11 偶联受体(例如,M1 或 M3 受体)刺激显着增加了 TRPC1α/4 电流,但诱导了 TRPC1β/4 的轻度激活。此外,当与 TRPC4 表达时,TRPC1α 充当孔形成亚基,而不是 β 辅助亚基。与 TRPC4 多聚化时,TRPC1α 也产生了强大的孔场强度。我们还发现,Gi/o 偶联受体(例如,M2 受体)刺激不足以激活 TRPC1α/4 和 TRPC1β/4 通道,但选择性激活 TRPC4 同源性通道。这些发现表明,TRPC1/4 通道根据 TRPC1 同工型亚型和受体刺激系统表现出动态门控特性。因此,在彻底理解 TRPC1 和 TRPC1/4 通道时,仔细区分 TRPC1 同工型和上游激活系统的特异性非常重要。