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一个量子中递质分子的数量:通过乙酰胆碱在神经肌肉突触处的离子电渗应用进行的估计。

The number of transmitter molecules in a quantum: an estimate from iontophoretic application of acetylcholine at the neuromuscular synapse.

作者信息

Kuffler S W, Yoshikami D

出版信息

J Physiol. 1975 Oct;251(2):465-82. doi: 10.1113/jphysiol.1975.sp011103.

Abstract
  1. The sensitivity of the subsynaptic membrane of twitch muscles of the frog and snake to iontophoretically applied acetylcholine (ACh) was determined. Optimal placement of ACh micropipettes on to the postsynaptic membrane resulted in potentials that were similar, though not identical, to the miniature excitatory post-synaptic potentials (min e.p.s.p.s). A sensitive bio-assay was developed to measure the output of ACh from micropipettes; this allowed an estimate to be made of the upper limit of the number of ACh molecules in a quantum of transmitter that is released from the nerve to produce a min e.p.s.p. 2. The assay to calibrate the output of ACh from micropipettes used the end-plate of the snake muscle as an ACh concentration detector. The end-plate was situated within a few mum of an oil-water interface, and a 0-6 nl. droplet of Ringer solution containing a known concentration of ACh (1 muM or less) was formed in the oil phase. The droplet was brought to the interface and, upon touching it, discharged its contents into the Ringer phase immediately above the end-plate. This resulted in a membrane depolarization that was recorded with an intracellular microelectrode. By applying droplets containing various known ACh concentrations a standard curve was constructed. To measure the ACh output of micropipettes a 0-6 nl. droplet of Ringer solution was suspended in the oil. The ACh pipette tip was inserted into the droplet and several thousand pulses of ACh were then delivered. The ACh content of the test droplet was measured by comparing its effectiveness in depolarizing the end-plate with the standard curve. In this manner the number of ACh molecules released in a single pulse was determined as a function of charge passed through the pipette. The output of ACh was linear and an average of 30,000 molecules of ACh were released per pC. 3. The sensitivity of the subsynaptic membrane to iontophoretically applied ACh, using the linear slopes of dose-response curves, in preparations from frog and snake treated with anticholinesterases was usually about 5 mV/pC. It follows that 6000 molecules of ACh are sufficient to produce a depolarization of 1 mV in the subsynaptic membrane. 4. The mean min e.p.s.p.s of muscle fibres treated with anticholinesterase range from 1 to 3 mV. Since the ACh released from an iontophoretic pipette is less effective than the same amount released from the nerve, it is concluded that a quantum of transmitter consists of less than 10,000 molecules of ACh. 5. It is calculated that for each molecule of ACh released in a quantum there results a minimum net flow of 3000 univalent ions across the synaptic membrane.
摘要
  1. 测定了青蛙和蛇的抽搐肌突触后膜对离子电泳施加的乙酰胆碱(ACh)的敏感性。将ACh微电极最佳放置在突触后膜上会产生与微小兴奋性突触后电位(min e.p.s.p.s)相似但不完全相同的电位。开发了一种灵敏的生物测定法来测量微电极中ACh的输出;这使得能够估计从神经释放以产生一个min e.p.s.p.的一个递质量子中ACh分子数量的上限。

  2. 校准微电极中ACh输出的测定法使用蛇肌终板作为ACh浓度检测器。终板位于油水界面几微米范围内,在油相中形成一个含有已知浓度ACh(1μM或更低)的0 - 6 nl林格液滴。将液滴带到界面,接触界面时,其内容物立即释放到终板上方的林格相中。这导致膜去极化,用细胞内微电极记录。通过施加含有各种已知ACh浓度的液滴构建标准曲线。为了测量微电极的ACh输出,将一个0 - 6 nl林格液滴悬浮在油中。将ACh微电极尖端插入液滴,然后施加数千个ACh脉冲。通过将其使终板去极化的效果与标准曲线比较来测量测试液滴中的ACh含量。通过这种方式,确定单个脉冲中释放的ACh分子数量是通过微电极的电荷量的函数。ACh的输出是线性的,每皮库仑平均释放30,000个ACh分子。

  3. 使用剂量 - 反应曲线的线性斜率,在用抗胆碱酯酶处理的青蛙和蛇的标本中,突触后膜对离子电泳施加的ACh的敏感性通常约为5 mV/pC。由此可知,6000个ACh分子足以使突触后膜产生1 mV的去极化。

  4. 用抗胆碱酯酶处理的肌纤维的平均min e.p.s.p.s范围为1至3 mV。由于从离子电泳微电极释放的ACh比从神经释放的相同量的ACh效果差,所以得出结论,一个递质量子由少于10,000个ACh分子组成。

  5. 据计算,在一个量子中释放的每个ACh分子会导致至少3000个单价离子跨突触膜的净流动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6229/1348438/cbc4b5e8a435/jphysiol00883-0239-a.jpg

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