首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Phosphorylation sites in the Hook domain of Ca-V beta subunits differentially modulate Ca(V)1.2 channel function
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Phosphorylation sites in the Hook domain of Ca-V beta subunits differentially modulate Ca(V)1.2 channel function

机译:Ca-Vβ亚基的胡克域中的磷酸化位点差异地调节Ca(V)1.2通道功能。

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Regulation of L-type calcium current is critical for the development, function, and regulation of many cell types. Ca(V)1.2 channels that conduct L-type calcium currents are regulated by many protein kinases, but the sites of action of these kinases remain unknown in most cases. We combined mass spectrometry (LC-MS/MS) and whole-cell patch clamp techniques in order to identify sites of phosphorylation of Ca-V beta subunits in vivo and test the impact of mutations of those sites on Ca(V)1.2 channel function in vitro. Using the Ca(V)1.1 channel purified from rabbit skeletal muscle as a substrate for phosphoproteomic analysis, we found that Ser(193) and Thr(205) in the HOOK domain of Ca-V beta(1a) a subunits were both phosphorylated in vivo. Ser(193) is located in a potential consensus sequence for casein kinase II, but it was not phosphorylated in vitro by that kinase. In contrast, Thr205 is located in a consensus sequence for cAMP-dependent phosphorylation, and it was robustly phosphorylated in vitro by PKA. These two sites are conserved in multiple Ca-V beta subunit isoforms, including the principal Ca-V beta subunit of cardiac Ca(V)1.2 channels, Ca-V beta(2b). In order to assess potential modulatory effects of phosphorylation at these sites separately from the effects of phosphorylation of the alpha(1)1.2 subunit, we inserted phosphomimetic or phosphoinhibitory mutations in Ca-V beta(2b) and analyzed their effects on Ca(V)1.2 channel function in transfected nonmuscle cells. The phosphomimetic mutation Ca-V beta(S152E)(2b) decreased peak channel currents and shifted the voltage dependence of both activation and inactivation to more positive membrane potentials. The phosphoinhibitory mutation Ca-V beta(S152A)(2b) had opposite effects. There were no differences in peak Ca(V)1.2 currentsor voltage dependence between the phosphomimetic mutation Ca-V beta(T164D)(2b) and the phosphoinhibitory mutation Ca-V beta(T164A)(2b). However, calcium-dependent inactivation was significantly increased for the phosphomimetic mutation Ca-V beta(T164D)(2b). This effect was subunit-specific, as the corresponding mutation in the palmitoylated isoform, Cav132a, had no effect. Overall, our data identify two conserved sites of phosphorylation of the Hook domain of Ca-V beta subunits in vivo and reveal differential modulatory effects of phosphomimetic mutations in these sites. These results reveal a new dimension of regulation of Ca(V)1.2 channels through phosphorylation of the Hook domains of their beta subunits. (C) 2015 Elsevier Ltd. All rights reserved.
机译:L型钙电流的调节对于许多细胞类型的发育,功能和调节至关重要。进行L型钙电流的Ca(V)1.2通道受许多蛋白激酶调节,但在大多数情况下这些激酶的作用位点仍然未知。我们结合质谱分析法(LC-MS / MS)和全细胞膜片钳技术,以鉴定体内Ca-Vβ亚基的磷酸化位点,并测试这些位点突变对Ca(V)1.2通道功能的影响体外。使用从兔骨骼肌纯化的Ca(V)1.1通道作为磷酸化蛋白质组学分析的底物,我们发现Ca-V beta(1a)a的HOOK域中的Ser(193)和Thr(205)都在磷酸化体内。 Ser(193)位于酪蛋白激酶II的潜在共有序列中,但在体外并未被该激酶磷酸化。相反,Thr205位于cAMP依赖性磷酸化的共有序列中,并且在体外被PKA牢固地磷酸化。这两个站点被保存在多个Ca-V beta亚基同工型中,包括心脏Ca(V)1.2通道的主要Ca-V beta亚基,Ca-V beta(2b)。为了评估这些位点的磷酸化的潜在调节作用与alpha(1)1.2亚基的磷酸化作用分开的作用,我们在Ca-V beta(2b)中插入了拟磷酸酶或磷酸抑制突变,并分析了其对Ca(V)的影响1.2通道功能在转染的非肌细胞中。拟磷酸酶突变Ca-V beta(S152E)(2b)降低了峰值通道电流,并将激活和失活的电压依赖性转移到了更大的正膜电位上。磷酸抑制突变Ca-V beta(S152A)(2b)具有相反的作用。磷酸化模拟突变Ca-V beta(T164D)(2b)和磷酸化抑制突变Ca-V beta(T164A)(2b)之间的峰值Ca(V)1.2电流或电压依赖性没有差异。但是,钙依赖的失活明显增加了磷酸化模拟突变Ca-V beta(T164D)(2b)。该作用是亚单位特异性的,因为棕榈酰化同工型Cav132a中的相应突变没有作用。总体而言,我们的数据确定了体内Ca-Vβ亚基的Hook域的两个保守的磷酸化位点,并揭示了这些位点上拟磷酸酶突变的不同调节作用。这些结果揭示了通过其β亚基的Hook域的磷酸化来调节Ca(V)1.2通道的新维度。 (C)2015 Elsevier Ltd.保留所有权利。

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