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钙通道火花活动的 L 型钙通道的 c-Src 和 PKC-α调节。

Regulation of L-type calcium channel sparklet activity by c-Src and PKC-α.

机构信息

Department of Biological Engineering University of Missouri, Columbia, Missouri, USA.

出版信息

Am J Physiol Cell Physiol. 2013 Sep;305(5):C568-77. doi: 10.1152/ajpcell.00381.2011. Epub 2013 Jun 26.

Abstract

The activity of persistent Ca²⁺ sparklets, which are characterized by longer and more frequent channel open events than low-activity sparklets, contributes substantially to steady-state Ca²⁺ entry under physiological conditions. Here, we addressed two questions related to the regulation of Ca²⁺ sparklets by PKC-α and c-Src, both of which increase whole cell Cav1.2 current: 1) Does c-Src activation enhance persistent Ca²⁺ sparklet activity? 2) Does PKC-α activate c-Src to produce persistent Ca²⁺ sparklets? With the use of total internal reflection fluorescence microscopy, Ca²⁺ sparklets were recorded from voltage-clamped tsA-201 cells coexpressing wild-type (WT) or mutant Cav1.2c (the neuronal isoform of Cav1.2) constructs ± active or inactive PKC-α/c-Src. Cells expressing Cav1.2c exhibited both low-activity and persistent Ca²⁺ sparklets. Persistent Ca²⁺ sparklet activity was significantly reduced by acute application of the c-Src inhibitor PP2 or coexpression of kinase-dead c-Src. Cav1.2c constructs mutated at one of two COOH-terminal residues (Y²¹²²F and Y²¹³⁹F) were used to test the effect of blocking putative phosphorylation sites for c-Src. Expression of Y²¹²²F but not Y²¹³⁹F Cav1.2c abrogated the potentiating effect of c-Src on Ca²⁺ sparklet activity. We could not detect a significant change in persistent Ca²⁺ sparklet activity or density in cells coexpressing Cav1.2c + PKC-α, regardless of whether WT or Y²¹²²F Cav1.2c was used, or after PP2 application, suggesting that PKC-α does not act upstream of c-Src to produce persistent Ca²⁺ sparklets. However, our results indicate that persistent Ca²⁺ sparklet activity is promoted by the action of c-Src on residue Y²¹²² of the Cav1.2c COOH terminus.

摘要

持久钙火花的活动,其特征是通道开放事件比低活性钙火花更长、更频繁,在生理条件下对稳态钙内流有很大贡献。在这里,我们解决了两个与 PKC-α 和 c-Src 调节钙火花有关的问题,这两者都增加了全细胞 Cav1.2 电流:1)c-Src 的激活是否增强持久钙火花的活动?2)PKC-α 是否激活 c-Src 产生持久钙火花?使用全内反射荧光显微镜,从共表达野生型(WT)或突变 Cav1.2c(Cav1.2 的神经元同工型)构建体±活性或非活性 PKC-α/c-Src 的电压钳 tsA-201 细胞中记录钙火花。表达 Cav1.2c 的细胞表现出低活性和持久钙火花。急性应用 c-Src 抑制剂 PP2 或共表达激酶失活的 c-Src 显著降低了持久钙火花的活性。使用两个 COOH 末端残基(Y2122F 和 Y2139F)之一突变的 Cav1.2c 构建体来测试阻断 c-Src 假定磷酸化位点的效果。表达 Y2122F 但不是 Y2139F Cav1.2c 构建体消除了 c-Src 对钙火花活性的增强作用。我们无法检测到共表达 Cav1.2c + PKC-α 的细胞中持久钙火花活性或密度的显著变化,无论使用 WT 还是 Y2122F Cav1.2c,或者在应用 PP2 后,这表明 PKC-α 不会作为 c-Src 的上游来产生持久钙火花。然而,我们的结果表明,持久钙火花的活性是由 c-Src 对 Cav1.2c COOH 末端残基 Y2122 的作用促进的。

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