首页> 外文OA文献 >FORSKOLIN AND PROTEIN KINASE INHIBITORS DIFFERENTIALLY\ud AFFECT HAIR CELL POTASSIUM CURRENTS AND TRANSMITTER\ud RELEASE AT THE CYTONEURAL JUNCTION IN THE ISOLATED FROG\ud LABYRINTH
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FORSKOLIN AND PROTEIN KINASE INHIBITORS DIFFERENTIALLY\ud AFFECT HAIR CELL POTASSIUM CURRENTS AND TRANSMITTER\ud RELEASE AT THE CYTONEURAL JUNCTION IN THE ISOLATED FROG\ud LABYRINTH

机译:FORsKOLIN和蛋白激酶抑制剂差别很大\ ud 影响头发细胞钾电流和发射器\ ud 在孤立的青蛙的圆锥形结构中的释放\ ud 迷宫

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摘要

The post-transductional elaboration of sensory input at the frog semicircular canal has been studied by correlating the effects of drugs that interfere with phosphorylation processes on: (i) potassium conductances in isolated hair cell and (ii) transmitter release at the cytoneural junction in the intact labyrinth. At hair cells, delayed potassium currents (IKD) undergo voltage- and time-dependent inactivation; inactivation removal requires ATP, is sensitive to kinase blockade, but is unaffected by exogenous application of cyclic nucleotides. We report here that forskolin, an activator of endogenous adenylyl cyclase, enhances IKD inactivation removal in isolated hair cells, but produces an overall decrease in IKD amplitude consistent with the direct blocking action of the drug on several families of K channels. In the intact labyrinth, forskolin enhances transmitter release, consistent with such depression of K conductances. Kinase blockers – H89 and KT5823 – have been shown to reduce IKD inactivation removal and IKD amplitude at isolated hair cells. In the labyrinth, the effects of these drugs on junctional activity are quite variable, with predominant inhibition of transmitter release, rather than the enhancement expected from the impairment of K currents. The overall action of forskolin and kinase inhibitors on K conductances is similar (depression), but they have opposite effects on transmitter release: this indicates that some intermediate steps between the bioelectric control of hair cell membrane potential and transmitter release are affected in opposite ways and therefore are presumably regulated by protein phosphorylation.
机译:通过关联干扰磷酸化过程的药物对以下方面的作用进行研究,研究青蛙半圆形管的感觉输入的转导后精细化:(i)分离的毛细胞中的钾电导和(ii)膜中神经元交界处的递质释放。完整的迷宫。在毛细胞处,延迟的钾电流(IKD)经历了电压和时间依赖性失活。灭活去除需要ATP,对激酶阻断敏感,但不受环核苷酸外源应用的影响。我们在这里报告说,福斯高林是一种内源性腺苷酸环化酶的激活剂,可增强离体毛细胞中IKD失活的去除,但会导致IKD振幅的总体降低,与药物对K家族的几个家族的直接阻断作用相一致。在完整的迷宫中,福司高林增强了递质的释放,与这种钾电导的降低相一致。已显示激酶阻断剂H89和KT5823可减少孤立毛细胞的IKD失活去除率和IKD幅度。在迷宫中,这些药物对连接活性的影响是非常可变的,主要抑制了递质的释放,而不是预期的K电流增强。毛喉素和激酶抑制剂对钾电导的总体作用相似(抑制),但它们对递质释放的作用相反:这表明在生物电控制毛细胞膜电位和递质释放之间的某些中间步骤受到相反的影响,并且因此推测是受蛋白质磷酸化的调节。

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