首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Rapid application and removal of second messengers to cyclic nucleotide-gated channels from olfactory epithelium.
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Rapid application and removal of second messengers to cyclic nucleotide-gated channels from olfactory epithelium.

机译:快速应用第二种信使并从嗅觉上皮细胞中去除第二种信使到环状核苷酸门控通道。

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摘要

The last step in the second-messenger cascade mediating vertebrate olfactory transduction is the direct opening of a nonspecific cation channel by cAMP. The kinetic properties of this interaction are critical in determining the time course of the sensory response. To analyze these properties, excised inside-out membrane patches containing either the native channel from salamander olfactory-receptor neurons or a recombinant rat olfactory cyclic nucleotide-gated channel were exposed to short pulses of known concentrations of cAMP or cGMP to mimic a rapid and transient production of second messenger. Channel activity outlasted cyclic nucleotide pulses for several hundred milliseconds. This effect was due to an intrinsic property of the olfactory channel protein because it did not occur with cGMP-activated channels from retinal photoreceptors. Gating kinetics of the olfactory channel were both voltage and agonist dependent. These results demonstrate that the overall slow channel-gating kinetics could account for the difference in time course between the odor-induced changes in cAMP concentration and the subsequent sensory generator current.
机译:第二信使级联介导脊椎动物嗅觉转导的最后一步是通过cAMP直接打开非特异性阳离子通道。这种相互作用的动力学特性对于确定感觉反应的时间过程至关重要。为了分析这些特性,将含有sal的嗅觉受体神经元的天然通道或重组大鼠嗅觉环状核苷酸门控通道的切下的由内而外的膜片暴露于已知浓度的cAMP或cGMP的短脉冲中,以模拟快速和瞬时生产第二个Messenger。通道活性使环状核苷酸脉冲持续了几百毫秒。此作用归因于嗅觉通道蛋白的固有特性,因为它不是来自视网膜感光器的cGMP激活通道发生的。嗅觉通道的门控动力学既取决于电压又取决于激动剂。这些结果表明,总体缓慢的通道门控动力学可以解释气味诱导的cAMP浓度变化与随后的感官发生器电流之间的时程差异。

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