Department of Physiology, Seoul National University School of Medicine, Seoul, Korea.
Am J Physiol Cell Physiol. 2023 Jul 1;325(1):C42-C51. doi: 10.1152/ajpcell.00488.2022. Epub 2023 May 22.
Transient receptor potential channels canonical 1 and 4 (TRPC1 and TRPC4) are proteins belonging to the same TRPC channel family, and the two are known to form a heterotetrameric channel. TRPC4 can form a homotetrameric, nonselective cation channel by itself, but the involvement of the TRPC1 subunit changes several major characteristics of the channel. In this study, we focused on the pore region (selectivity filter, pore helix, and S6 helix) of TRPC1 and TRPC4 as a determinant of the identity and characteristics of a heteromeric TRPC1/4 channel: decreased calcium permeability of the channel and outward-rectifying current-voltage (-) curve. Mutants and chimeras of the pore residues were created, and their currents were recorded using whole cell patch clamp. The lower gate mutants of TRPC4 exhibited diminished calcium permeability as measured by GCaMP6 fluorescence. Also, chimeric channels substituting the pore region of TRPC1 to TRPC4 were made to locate the pore region that is critical in the production of an outward-rectifying - curve characteristic of TRPC1/4 heteromeric channels. Heteromer research has been a challenging field due to lack of structural studies. Using chimeras and single mutants, we present evidence that the pore region of TRPC1/4 heteromer contributes to determining the channel's characteristics such as calcium permeability, - curve, and conductance.
瞬时受体电位通道经典型 1 和 4(TRPC1 和 TRPC4)是属于同一 TRPC 通道家族的蛋白质,已知这两种蛋白形成异四聚体通道。TRPC4 本身可以形成同源四聚体、非选择性阳离子通道,但 TRPC1 亚基的参与改变了通道的几个主要特征。在这项研究中,我们专注于 TRPC1 和 TRPC4 的孔区(选择性过滤器、孔螺旋和 S6 螺旋)作为异源二聚体 TRPC1/4 通道的身份和特征的决定因素:降低通道的钙通透性和外向整流电流-电压 (-) 曲线。创建了孔残基的突变体和嵌合体,并使用全细胞膜片钳记录它们的电流。TRPC4 的低门控突变体表现出钙通透性降低,如 GCaMP6 荧光测量所示。此外,还构建了将 TRPC1 的孔区替换为 TRPC4 的嵌合通道,以定位在产生 TRPC1/4 异源二聚体通道的外向整流 - 曲线特征中起关键作用的孔区。由于缺乏结构研究,异源二聚体研究一直是一个具有挑战性的领域。使用嵌合体和单突变体,我们提供了证据表明 TRPC1/4 异源二聚体的孔区有助于确定通道的特性,如钙通透性、- 曲线和电导率。