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肽类共递质增强小龙虾骨骼肌中的钙通道活性。

Peptide cotransmitter potentiates calcium channel activity in crayfish skeletal muscle.

作者信息

Bishop C A, Krouse M E, Wine J J

机构信息

Department of Psychology, Stanford University, California 94305-2130.

出版信息

J Neurosci. 1991 Jan;11(1):269-76. doi: 10.1523/JNEUROSCI.11-01-00269.1991.

Abstract

The activity of 2 types of Ca2+ channels (38 and 14 pS in 137 mM Ba2+) in the plasma membrane of the crayfish tonic flexor muscle is modulated by the peptide proctolin. This peptide serves as a cotransmitter in 3 of the 5 excitatory tonic flexor motoneurons and greatly enhances tension after depolarization by the conventional neurotransmitter. Proctolin alone has no effect on these channels, but renders them capable of sustained activity following depolarization. After depolarization induces activity, 5 x 10(-9) M proctolin increases the open probability of the larger channel up to 50-fold due to a marked decrease in the mean channel closed time. There is also at least a 4-fold increase in the percentage of patches with active channels for the large channel and a 2-fold increase for the small channel. Proctolin modulation appears to occur via an intracellular messenger, possibly cAMP. The peptide's effect on channel activity is dose dependent in a manner that parallels its effect on tension. These results indicate that the activation of these channels and the resulting influx of Ca2+ into the muscle fiber play a role in the potentiation of tension in this muscle.

摘要

小龙虾强直屈肌质膜中两种类型的Ca2+通道(在137 mM Ba2+中分别为38和14 pS)的活性受肽促肠肌肽调节。该肽在5个兴奋性强直屈肌运动神经元中的3个中作为共递质,并在传统神经递质去极化后极大地增强张力。单独的促肠肌肽对这些通道没有影响,但使其在去极化后能够持续活动。去极化诱导活动后,5×10−9 M促肠肌肽使较大通道的开放概率增加高达50倍,这是由于平均通道关闭时间显著缩短。对于大通道,有活性通道的膜片百分比至少增加4倍,对于小通道则增加2倍。促肠肌肽的调节似乎是通过细胞内信使,可能是cAMP发生的。该肽对通道活性的影响呈剂量依赖性,其方式与其对张力的影响相似。这些结果表明,这些通道的激活以及由此导致的Ca2+流入肌肉纤维在该肌肉张力增强中起作用。

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