Alfonso Salgado, Benito Ordaz, Alicia Sampieri, Angélica Zepeda, Patricia Glazebrook, Diana Kunze, Vaca Luis
Department of Cell Biology, Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, México CP 04510, D.F., Mexico.
Cell Calcium. 2008 Apr;43(4):375-87. doi: 10.1016/j.ceca.2007.07.004. Epub 2007 Sep 11.
Members of the Canonical Transient Receptor Potential (TRPC) family of ionic channels are able to form homo- and heterotetrameric channels. Depending on the study, TRPC1 has been detected on both the surface and inside the cell, probably in the endoplasmic reticulum (ER). Likewise, TRPC1 has been described both as a store-operated channel and as one unable to function when forming a homotetramer. It is possible that the apparent differences in the expression and function of TRPC1 are due to its association with other proteins, possibly from the same TRPC family. In the present study we used confocal microscopy and a fluorescently tagged TRPC1 to examine the localization of this protein when co-expressed with other members of the TRPC family. Whole-cell and single channel electrophysiological recordings were conducted to study the function of TRPC1 expressed alone or co-expressed with other members of the TRPC family. A FRET-based calcium sensor fused to TRPC1 was used to assess the functionality of the intracellular TRPC1. Our results showed that TRPC4 and TRPC5 were able to increase the amount of membrane-expressed TRPC1 as evaluated by confocal microscopy and patch clamp recordings. The FRET-based calcium sensor fused to TRPC1 strongly suggests that this protein forms ER-expressed functional homotetrameric channels activated by agonists coupled to the IP(3) cascade. These results indicate that TRPC1 is a multifunctional protein able to form intracellular calcium release channels when expressed alone, and plasma membrane channels when co-expressed with TRPC4 or TRPC5, but not TRPC3 or TRPC6. Both (ER and plasma membrane) forms of the channel are activated upon addition of agonists coupled to the IP(3) cascade.
离子通道的典型瞬时受体电位(TRPC)家族成员能够形成同四聚体和异四聚体通道。根据研究,TRPC1在细胞表面和细胞内均有检测到,可能在内质网(ER)中。同样,TRPC1既被描述为一种储存操纵性通道,又被描述为形成同四聚体时无法发挥功能的通道。TRPC1在表达和功能上的明显差异可能是由于它与其他蛋白质(可能来自同一个TRPC家族)的关联。在本研究中,我们使用共聚焦显微镜和荧光标记的TRPC1来检查该蛋白与TRPC家族其他成员共表达时的定位。进行全细胞和单通道电生理记录以研究单独表达或与TRPC家族其他成员共表达的TRPC1的功能。使用与TRPC1融合的基于FRET的钙传感器来评估细胞内TRPC1的功能。我们的结果表明,通过共聚焦显微镜和膜片钳记录评估,TRPC4和TRPC5能够增加膜表达的TRPC1的量。与TRPC1融合的基于FRET的钙传感器强烈表明,该蛋白形成由与IP(3)级联反应偶联的激动剂激活的内质网表达的功能性同四聚体通道。这些结果表明,TRPC1是一种多功能蛋白,单独表达时能够形成细胞内钙释放通道,与TRPC4或TRPC5共表达时能够形成质膜通道,但与TRPC3或TRPC6共表达时则不能。通道的两种形式(内质网和质膜)在添加与IP(3)级联反应偶联的激动剂后均被激活。