Mia Sobuj, Munoz Carlos, Pakladok Tatsiana, Siraskar Gulab, Voelkl Jakob, Alesutan Ioana, Lang Florian
Department of Physiology, University of Tübingen, Tübingen, Germany.
Cell Physiol Biochem. 2012;30(4):1039-50. doi: 10.1159/000341480. Epub 2012 Sep 24.
The voltage gated K(+) channel Kv1.5 participates in the repolarization of a wide variety of cell types. Kv1.5 is downregulated during hypoxia, which is known to stimulate the energy-sensing AMP-activated serine/threonine protein kinase (AMPK). AMPK is a powerful regulator of nutrient transport and metabolism. Moreover, AMPK is known to downregulate several ion channels, an effect at least in part due to stimulation of the ubiquitin ligase Nedd4- 2. The present study explored whether AMPK regulates Kv1.5.
cRNA encoding Kv1.5 was injected into Xenopus oocytes with and without additional injection of wild-type AMPK (α1 β 1γ1), of constitutively active (γR70Q)AMPK (α1 β 1γ1(R70Q)), of inactive mutant (αK45R)AMPK (α1(K45R)β1γ1), or of Nedd4-2. Kv1.5 activity was determined by two-electrode voltage-clamp. Moreover, Kv1.5 protein abundance in the cell membrane was determined by chemiluminescence and immunostaining with subsequent confocal microscopy.
Coexpression of wild-type AMPK(WT) and constitutively active AMPK(γR70Q), but not of inactive AMPK(αK45R) significantly reduced Kv1.5-mediated currents. Coexpression of constitutively active AMPKγR70Q further reduced Kv1.5 K(+) channel protein abundance in the cell membrane. Co-expression of Nedd4-2 similarly downregulated Kv1.5-mediated currents.
AMPK is a potent regulator of Kv1.5. AMPK inhibits Kv1.5 presumably in part by activation of Nedd4- 2 with subsequent clearance of channel protein from the cell membrane.
电压门控钾通道Kv1.5参与多种细胞类型的复极化过程。在缺氧期间,Kv1.5表达下调,而缺氧已知会刺激能量感应的AMP激活的丝氨酸/苏氨酸蛋白激酶(AMPK)。AMPK是营养物质运输和代谢的强大调节因子。此外,已知AMPK会下调几种离子通道,这种作用至少部分是由于刺激了泛素连接酶Nedd4-2。本研究探讨了AMPK是否调节Kv1.5。
将编码Kv1.5的cRNA注射到非洲爪蟾卵母细胞中,同时或不额外注射野生型AMPK(α1β1γ1)、组成型活性(γR70Q)AMPK(α1β1γ1(R70Q))、无活性突变体(αK45R)AMPK(α1(K45R)β1γ1)或Nedd4-2。通过双电极电压钳测定Kv1.5活性。此外,通过化学发光和免疫染色以及随后的共聚焦显微镜确定细胞膜中Kv1.5蛋白的丰度。
野生型AMPK(WT)和组成型活性AMPK(γR70Q)共表达,但无活性AMPK(αK45R)共表达不会显著降低Kv1.5介导的电流。组成型活性AMPKγR70Q共表达进一步降低了细胞膜中Kv1.5钾通道蛋白的丰度。Nedd4-2共表达同样下调了Kv1.5介导的电流。
AMPK是Kv1.5的有效调节因子。AMPK抑制Kv1.5可能部分是通过激活Nedd4-2,随后使通道蛋白从细胞膜清除。