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Activation of Acid-sensing Ion Channel 1a (ASIC1a) by Surface Trafficking

机译:通过表面贩运激活酸敏感离子通道1a(ASIC1a)

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摘要

Acid-sensing ion channels (ASICs) are voltage-independent Na+ channels activated by extracellular protons. ASIC1a is expressed in neurons in mammalian brain and is implicated in long term potentiation of synaptic transmission that contributes to learning and memory. In ischemic brain injury, however, activation of this Ca2+-permeable channel plays a critical role in acidosis-mediated, glutamate-independent, Ca2+ toxicity. We report here the identification of insulin as a regulator of ASIC1a surface expression. In modeled ischemia using Chinese hamster ovary cells, serum depletion caused a significant increase in ASIC1a surface expression that resulted in the potentiation of ASIC1a activity. Among the components of serum, insulin was identified as the key factor that maintains a low level of ASIC1a on the plasma membrane. Neurons subjected to insulin depletion increased surface expression of ASIC1a with resultant potentiation of ASIC1a currents. Intracellularly, ASIC1a is predominantly localized to the endoplasmic reticulum in Chinese hamster ovary cells, and this intracellular localization is also observed in neurons. Under conditions of serum or insulin depletion, the intracellular ASIC1a is translocated to the cell surface, increasing the surface expression level. These results reveal an important trafficking mechanism of ASIC1a that is relevant to both the normal physiology and the pathological activity of this channel.
机译:酸敏感离子通道(ASICs)是由细胞外质子激活的电压无关的Na + 通道。 ASIC1a在哺乳动物脑中的神经元中表达,并且与有助于学习和记忆的突触传递的长期增强有关。然而,在缺血性脑损伤中,该Ca 2 + 渗透通道的激活在酸中毒介导的,不依赖谷氨酸的Ca 2 + 毒性中起关键作用。我们在这里报告鉴定胰岛素作为ASIC1a表面表达的调节剂。在使用中国仓鼠卵巢细胞进行的模型化缺血中,血清耗竭导致ASIC1a表面表达显着增加,从而导致ASIC1a活性增强。在血清成分中,胰岛素被认为是维持质膜上ASIC1a低水平的关键因素。接受胰岛素耗竭的神经元增加了ASIC1a的表面表达,并增强了ASIC1a电流。在细胞内,ASIC1a主要定位于中国仓鼠卵巢细胞的内质网,并且在神经元中也观察到这种细胞内定位。在血清或胰岛素耗竭的条件下,细胞内ASIC1a易位至细胞表面,从而增加了表面表达水平。这些结果揭示了ASIC1a的重要贩运机制,该机制与该通道的正常生理和病理活动均相关。

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