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RalA GTPase 通过与 α2 δ-1 亚基结合将胰岛素颗粒固定到 L 型和 R 型钙通道上。

RalA GTPase tethers insulin granules to L- and R-type calcium channels through binding α2 δ-1 subunit.

机构信息

Department of Physiology and Medicine, University of Toronto, Toronto, Ontario, M5S 1A8, Canada.

出版信息

Traffic. 2013 Apr;14(4):428-39. doi: 10.1111/tra.12047. Epub 2013 Feb 14.

Abstract

RalA GTPase has been implicated in the regulated delivery of exocytotic vesicles to the plasma membrane (PM) in mammalian cells. We had reported that RalA regulates biphasic insulin secretion, which we have now determined to be contributed by RalA direct interaction with voltage-gated calcium (Cav ) channels. RalA knockdown (KD) in INS-1 cells and primary rat β-cells resulted in a reduction in Ca(2+) currents arising specifically from L-(Cav 1.2 and Cav 1.3) and R-type (Cav 2.3) Ca(2+) channels. Restoration of RalA expression in RalA KD cells rescued these defects in Ca(2+) currents. RalA co-immunoprecipitated with the Cav α2 δ-1 auxiliary subunit known to bind the three Cav s. Moreover, the functional molecular interactions between Cav α2 δ-1 and RalA on the PM shown by total internal reflection fluorescent microscopy/FRET analysis could be induced by glucose stimulation. KD of RalA inhibited trafficking of α2 δ-1 to insulin granules without affecting the localization of the other Cav subunits. Furthermore, we confirmed that RalA and α2 δ-1 functionally interact since RalA KD-induced inhibition of Cav currents could not be recovered by RalA when α2 δ-1 was simultaneously knocked down. These data provide a mechanism for RalA function in insulin secretion, whereby RalA binds α2 δ-1 on insulin granules to tether these granules to PM Ca(2+) channels. This acts as a chaperoning step prior to and in preparation for sequential assembly of exocyst and excitosome complexes that mediate biphasic insulin secretion.

摘要

RalA GTPase 已被牵连到哺乳动物细胞中分泌囊泡向质膜(PM)的调节性分泌中。我们曾报道过,RalA 调节双相胰岛素分泌,我们现在已经确定这是由 RalA 与电压门控钙(Cav)通道的直接相互作用贡献的。在 INS-1 细胞和原代大鼠β细胞中敲低(KD)RalA 会导致特定于 L-(Cav1.2 和 Cav1.3)和 R 型(Cav2.3)钙通道的 Ca2+电流减少。在 RalA KD 细胞中恢复 RalA 表达可挽救这些 Ca2+电流缺陷。RalA 与 Cav α2 δ-1 辅助亚基共免疫沉淀,该亚基已知与三种 Cav 结合。此外,通过全内反射荧光显微镜/FRET 分析显示,PM 上 Cav α2 δ-1 和 RalA 之间的功能分子相互作用可被葡萄糖刺激诱导。RalA 的 KD 抑制了 α2 δ-1 向胰岛素颗粒的运输,而不影响其他 Cav 亚基的定位。此外,我们证实 RalA 和 α2 δ-1 具有功能相互作用,因为当同时敲低 α2 δ-1 时,RalA KD 诱导的 Cav 电流抑制不能被 RalA 恢复。这些数据提供了 RalA 在胰岛素分泌中的功能机制,其中 RalA 与胰岛素颗粒上的 α2 δ-1 结合,将这些颗粒固定在 PM Ca2+通道上。这作为顺序组装外泌体和激发体复合物以介导双相胰岛素分泌的前导和准备步骤。

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