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胰岛素介导的 GH3 细胞 T 型钙电流的上调是通过增加内体再循环和表面 Cav3.1 通道的整合来介导的。

Insulin-mediated upregulation of T-type Ca2+ currents in GH3 cells is mediated by increased endosomal recycling and incorporation of surface membrane Cav3.1 channels.

机构信息

Department of Cell Biology, Center for Research and Advanced Studies of the National Polytechnic Institute (Cinvestav-IPN), Mexico City, Mexico.

出版信息

Cell Calcium. 2012 Nov;52(5):377-87. doi: 10.1016/j.ceca.2012.06.005. Epub 2012 Jul 7.

Abstract

Growth factors and hormones have both short- and long-term regulatory effects on the functional expression of voltage gated Ca2+ (CaV) channels. In particular, it has been reported that chronic treatment with insulin upregulates T-type channel membrane expression, leading to an increase in current density in clonal pituitary GH3 cells. Though this regulatory action may result from alterations in gene expression, recent studies have demonstrated also that endosomal trafficking provides a mechanism for dynamic changes in CaV channel membrane density. Therefore, in the present work we sought to determine whether the actions of insulin on T-type channel functional expression are mediated by transcriptional and/or post-transcriptional mechanisms. Using real-time RT-PCR and semi-quantitative western blot we found no changes after treatment in the transcript and protein levels of Cav3.1, the T-type channel isoform preferentially expressed in the GH3 cells. Consistent with this, transcriptional studies using a luciferase reporter assay suggested that insulin treatment does not affect the Cav3.1 promoter activity. In contrast, patch-clamp recordings on HEK-293 cells stably expressing Cav3.1 channels showed a significant increase in current density after treatment, suggesting that the effects of insulin may require post-transcriptional regulation. In line with this, disruption of the endosomal recycling pathway using Brefeldin A and a dominant negative mutant of the small GTPase Rab11a prevented the stimulatory effects of insulin on Cav3.1 channels in HEK-293 cells. These results may help explain the effects of insulin on T-type channels and contribute to our understanding of how endosomal recycling impacts the functional expression of CaV channels.

摘要

生长因子和激素对电压门控 Ca2+(CaV)通道的功能表达都具有短期和长期的调节作用。特别是,有报道称,胰岛素的慢性处理上调了 T 型通道膜表达,导致克隆垂体 GH3 细胞中的电流密度增加。尽管这种调节作用可能是由于基因表达的改变,但最近的研究还表明,内体运输提供了 CaV 通道膜密度动态变化的机制。因此,在本工作中,我们试图确定胰岛素对 T 型通道功能表达的作用是否通过转录和/或转录后机制介导。使用实时 RT-PCR 和半定量 Western blot,我们发现处理后 Cav3.1(在 GH3 细胞中优先表达的 T 型通道同工型)的转录本和蛋白水平没有变化。与此一致,使用荧光素酶报告基因测定的转录研究表明,胰岛素处理不影响 Cav3.1 启动子活性。相比之下,在稳定表达 Cav3.1 通道的 HEK-293 细胞上进行的膜片钳记录显示,处理后电流密度显著增加,表明胰岛素的作用可能需要转录后调节。与此一致,使用布雷菲德菌素 A 和小 GTPase Rab11a 的显性负突变体破坏内体再循环途径,可防止胰岛素对 HEK-293 细胞中 Cav3.1 通道的刺激作用。这些结果可能有助于解释胰岛素对 T 型通道的作用,并有助于我们了解内体再循环如何影响 CaV 通道的功能表达。

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