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螃蟹神经肌肉接头处递质的强直释放。

Tonic release of transmitter at the neuromuscular junction of the crab.

作者信息

Parnas I, Rahamimoff R

出版信息

J Physiol. 1975 Sep;250(2):275-86. doi: 10.1113/jphysiol.1975.sp011054.

DOI:10.1113/jphysiol.1975.sp011054
PMID:240932
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1348361/
Abstract
  1. Synaptic transmission was studied at the neuromuscular junction of the crab Ocypoda cursor, using conventional electrophysiological technique. 2. It was found that fibres of the extensor muscle and those composing the internal layer of the closer muscle have only post-synaptic inhibition (S fibres) while the fibres at the external layer of the closer muscle have in addition presynaptic inhibition (R fibres). 3. In S fibres, addition of GABA reduces input membrane resistance (Rm) and e.p.s.p. amplitude approximately to the same degree. The effect shows desensitization. In R type fibres, GABA reduces the e.p.s.p. much more than expected from changes in Rm. The post-synaptic effect of GABA on Rm shows desensitization, while the presynaptic effect does not show desensitization. 4. In about 50 percent of the cases, after desensitization occurred, Rm increased by about 10-30 percent above the control. Similar increase in Rm occurred after application of picrotoxin. These results suggest that initially the membrane resistance was lower due to tonic release of inhibitory transmitter. 5. The Q10 of Rm was found to vary between 2 and 3. In Ca2+ free media, Cl- free media, or in picrotoxin the Q10 is about 1-3. 6. In R fibres, addition of picrotoxin increased the amplitude of the e.p.s.p. by 30-60 percent above the expected increase due to changes in Rm. 7. In S fibres the mean slope of log e.p.s.p. vs. log [Ca2+] was found to be 1-63, while in R fibres the slope was 0-93. These results suggest the presence of tonic release of the inhibitory transmitter which acts both post-synaptically and presynaptically.
摘要
  1. 采用传统电生理技术,对招潮蟹(Ocypoda cursor)神经肌肉接头处的突触传递进行了研究。2. 发现伸肌纤维和构成闭壳肌内层的纤维仅有突触后抑制(S纤维),而闭壳肌外层的纤维除有突触后抑制外,还有突触前抑制(R纤维)。3. 在S纤维中,加入γ-氨基丁酸(GABA)可使输入膜电阻(Rm)和兴奋性突触后电位(e.p.s.p.)幅度大致以相同程度降低。该效应表现为脱敏。在R型纤维中,GABA对e.p.s.p.的降低幅度远大于根据Rm变化所预期的幅度。GABA对Rm的突触后效应表现为脱敏,而突触前效应未表现出脱敏。4. 在约50%的情况下,脱敏发生后,Rm比对照值升高约10% - 30%。应用苦味毒后也出现了类似的Rm升高。这些结果表明,最初膜电阻较低是由于抑制性递质的持续释放。5. 发现Rm的温度系数(Q10)在2到3之间。在无钙培养基、无氯培养基或苦味毒中,Q10约为1 - 3。6. 在R纤维中,加入苦味毒使e.p.s.p.幅度比因Rm变化所预期的增加幅度高出30% - 60%。7. 在S纤维中,发现log e.p.s.p.与log [Ca2+]的平均斜率为1 - 63,而在R纤维中该斜率为0 - 93。这些结果表明存在抑制性递质的持续释放,其在突触后和突触前均起作用。

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On the permeability of the presynaptic terminal of the crayfish neuromuscular junction during synaptic inhibition and the action of gamma-aminobutyric acid.关于突触抑制期间小龙虾神经肌肉接头突触前终末的通透性以及γ-氨基丁酸的作用
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