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递质释放的定量研究

Quantitative aspects of transmitter release.

作者信息

Bittner G D, Kennedy D

出版信息

J Cell Biol. 1970 Dec;47(3):585-92. doi: 10.1083/jcb.47.3.585.

Abstract

The opener-stretcher motor neuron in crayfish makes 50 endings upon each of 1200 muscle fibers. We have calculated the quantal content of junctional potentials produced by individual terminals and by the whole cell at various physiological frequencies. The results show that when the motor neuron is active at 20 impulses/second, it releases 50 quanta/impulse per muscle fiber, or a total of 4.5 x 10(9) quanta/hr. These figures are similar to those for vertebrate muscles per fiber, but larger for the entire neuron because the opener motor unit is so large. On the basis that the quanta correspond to synaptic vesicles each containing 10(3)-10(4) molecules of transmitter, the release rate must be around 10(-11) mole/hr. This value is within an order of magnitude of the release figures obtained for mammalian neurons by collecting transmitter in perfusates, but it is far lower than the value reported for a crustacean inhibitory neuron. If the membrane materials surrounding each vesicle were lost in the release process, the replacement synthesis would involve 24 mm(2) of membrane/hr. We conclude that the metabolic load in terms of transmitter synthesis is probably sustainable, but that the release mechanism must operate in such a way that vesicle membrane materials are neither lost nor incorporated into the terminal membrane.

摘要

小龙虾的开肌牵张肌运动神经元在1200条肌纤维上各形成50个终末。我们已经计算了在不同生理频率下单个终末和整个细胞产生的接头电位的量子含量。结果表明,当运动神经元以每秒20次冲动的频率活动时,每条肌纤维每冲动释放50个量子,即每小时总共释放4.5×10⁹个量子。这些数字与脊椎动物肌肉每条纤维的情况相似,但对于整个神经元来说更大,因为开肌运动单位非常大。基于量子对应于每个含有10³ - 10⁴个递质分子的突触小泡,释放速率必须约为10⁻¹¹摩尔/小时。这个值与通过收集灌注液中的递质而获得的哺乳动物神经元的释放数字在一个数量级内,但远低于报道的一种甲壳类抑制性神经元的值。如果每个小泡周围的膜物质在释放过程中丢失,那么替代合成将涉及每小时24平方毫米的膜。我们得出结论,就递质合成而言,代谢负荷可能是可持续的,但释放机制必须以这样一种方式运作,即小泡膜物质既不丢失也不并入终末膜。

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Quantitative aspects of transmitter release.递质释放的定量研究
J Cell Biol. 1970 Dec;47(3):585-92. doi: 10.1083/jcb.47.3.585.

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The fine structure of the neuromuscular junction of the frog.青蛙神经肌肉接头的精细结构。
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