首页> 外文期刊>The Journal of Physiology >An acid-sensing ion channel from shark (Squalus acanthias) mediates transient and sustained responses to protons.
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An acid-sensing ion channel from shark (Squalus acanthias) mediates transient and sustained responses to protons.

机译:来自鲨鱼(棘鲨)的酸敏感离子通道介导了对质子的瞬时和持续响应。

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Acid-sensing ion channels (ASICs) are proton-gated Na(+) channels. They are implicated in synaptic transmission, detection of painful acidosis, and possibly sour taste. The typical ASIC current is a transient, completely desensitizing current that can be blocked by the diuretic amiloride. ASICs are present in chordates but are absent in other animals. They have been cloned from urochordates, jawless vertebrates, cartilaginous shark and bony fish, from chicken and different mammals. Strikingly, all ASICs that have so far been characterized from urochordates, jawless vertebrates and shark are not gated by protons, suggesting that proton gating evolved relatively late in bony fish and that primitive ASICs had a different and unknown gating mechanism. Recently, amino acids that are crucial for the proton gating of rat ASIC1a have been identified. These residues are completely conserved in shark ASIC1b (sASIC1b), prompting us to re-evaluate the proton sensitivity of sASIC1b. Here we show that, contrary to previous findings, sASIC1b is indeed gated by protons with half-maximal activation at pH 6.0. sASIC1b desensitizes quickly but incompletely, efficiently encoding transient as well as sustained proton signals. Our results show that the conservation of the amino acids crucial for proton gating can predict proton sensitivity of an ASIC and increase our understanding of the evolution of ASICs.
机译:酸感应离子通道(ASICs)是质子门控Na(+)通道。它们与突触传递,疼痛性酸中毒的检测以及可能的酸味有关。典型的ASIC电流是瞬态的,完全脱敏的电流,可被利尿剂阿米洛利阻断。 ASIC存在于脊索动物中,但在其他动物中却不存在。它们是从食管动物,无颚脊椎动物,软骨鲨鱼和骨鱼,鸡和其他哺乳动物中克隆而来的。引人注目的是,到目前为止,所有以urochordates,无颚脊椎动物和鲨鱼为特征的ASIC都没有被质子门控,这表明质子门控在骨鱼中的发展相对较晚,原始ASIC具有不同的未知门控机制。最近,已经确定了对大鼠ASIC1a的质子门控至关重要的氨基酸。这些残基在鲨鱼ASIC1b(sASIC1b)中是完全保守的,促使我们重新评估sASIC1b的质子敏感性。在这里,我们表明,与以前的发现相反,sASIC1b实际上是由质子门控的,其质子在pH 6.0时具有最大的一半活化作用。 sASIC1b可以快速但不完全地降低灵敏度,有效地编码瞬态以及持续的质子信号。我们的结果表明,对于质子门控至关重要的氨基酸的保守性可以预测ASIC的质子敏感性,并增加我们对ASIC进化的理解。

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