Benson J A, Levitan I B
Proc Natl Acad Sci U S A. 1983 Jun;80(11):3522-5. doi: 10.1073/pnas.80.11.3522.
Previous work has shown that serotonin causes an increase in K+ conductance in the identified Aplysia neuron R15. This response is mediated by cAMP-dependent protein phosphorylation. The results presented here show that the K+ channel modulated by serotonin is an anomalous or inward rectifier (designated IR) that is present in R15 together with the three other distinct K+ channels previously described for this cell. Several lines of evidence indicate that this inward rectifier is partially activated in the resting cell and is further activated by serotonin. Voltage clamp analysis of resting and serotonin-evoked membrane currents at various external K+ concentrations shows that both currents have reversal potentials close to the potassium equilibrium potential, exhibit similar dependences in magnitude on external K+ concentration, and display marked anomalous rectification. The effects of particular monovalent and divalent cations are also similar on the resting and serotonin-evoked currents. Rb+, Cs+, and Ba2+ block both currents while Tl+ can substitute for K+ as a charge carrier and channel activator in both. These properties are characteristics of anomalous rectifiers in other systems. Furthermore, measurement of the voltage dependence of inactivation for the fast transient K+ current shows that this current cannot account for the anomalously rectifying K+ conductance in R15. The inward rectifier is therefore a separate current mediated by its own channels, the activity of which can be modulated by serotonin.
先前的研究表明,血清素会导致已鉴定的海兔神经元R15中的钾离子电导增加。这种反应是由环磷酸腺苷(cAMP)依赖性蛋白磷酸化介导的。此处呈现的结果表明,受血清素调节的钾离子通道是一种异常或内向整流器(称为IR),它与先前描述的该细胞的其他三种不同钾离子通道一起存在于R15中。几条证据表明,这种内向整流器在静息细胞中部分被激活,并被血清素进一步激活。在不同外部钾离子浓度下对静息和血清素诱发的膜电流进行电压钳分析表明,两种电流的反转电位都接近钾离子平衡电位,在大小上对外部钾离子浓度表现出相似的依赖性,并显示出明显的异常整流。特定单价和二价阳离子对静息电流和血清素诱发电流的影响也相似。铷离子、铯离子和钡离子会阻断两种电流,而铊离子在两种电流中都可以替代钾离子作为电荷载体和通道激活剂。这些特性是其他系统中异常整流器的特征。此外,对快速瞬态钾离子电流失活的电压依赖性测量表明,这种电流无法解释R15中异常整流的钾离子电导。因此,内向整流器是由其自身通道介导的一种独立电流,其活性可被血清素调节。