首页> 美国卫生研究院文献>The Journal of Physiology >Direct measurement of ACh release from exposed frog nerve terminals: constraints on interpretation of non-quantal release.
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Direct measurement of ACh release from exposed frog nerve terminals: constraints on interpretation of non-quantal release.

机译:直接测量暴露的青蛙神经末梢ACh释放:解释非定量释放的限制。

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摘要

1. Acetylcholine (ACh) release from enzymatically exposed frog motor nerve terminals has been measured directly with closely apposed outside-out clamped patches of Xenopus myocyte membrane, rich in ACh receptor channels. When placed close to the synaptic surface of the terminal, such a membrane patch detects both nerve-evoked patch currents (EPCs) and spontaneous quantal 'miniature' patch currents (MPCs), from a few micrometres length of the terminal, in response to ACh release from the nearest three to five active zones. 2. Chemical measurements of ACh efflux from whole preparations revealed a spontaneous release rate of 4.1 pmol (2 h)-1, and no significant difference in resting efflux between enzyme-treated and control preparations. The ratio of enzyme-treated to contralateral control muscle efflux averaged 1.17, indicating that enzyme treatment did not affect spontaneous ACh release. Vesamicol (1.7 microM), which blocks the ACh transporter in synaptic vesicles, decreased the spontaneous release of ACh to 67% of control. 3. In the absence of nerve stimulation, the frequency of single-channel openings recorded by outside-out patch probes adjacent to nerve terminals was very low (1-2 min-1), and little different at a distance of hundreds of micrometres, suggesting that if ACh was continually leaking from the terminal in a non-quantal fashion, the amount being released near active zone regions on the terminal was below the limit of detection with the patches. 4. Direct measurements of the sensitivity of the patches, coupled with calculated ACh flux rates, lead to the conclusion that the amount of ACh released non-quantally from the synaptic surface of the frog nerve terminal is less than one-tenth the amount expected if all non-quantal release is from this region of the terminal membrane. 5. Following a series of single nerve shocks or a 50 Hz train of nerve stimuli, the frequency of asynchronous single-channel openings increased for several seconds. This transient increase in channel openings was not sensitive to movement of the patch electrode a significant distance (4 microns) away from the active sites, or to manipulations previously reported to block non-quantal transmitter leakage, including addition of 10 mM-Ca2+ or 1.7 microM-vesamicol to the bath. These channel openings appear to be due to an accumulation of ACh which originated from many evoked quanta, and not the effect of locally increased non-quantal ACh release due to nerve stimulation. 6. We conclude that transmitter leakage at adult frog terminals is either localized to a source other than the synaptic surface of the nerve terminal, or released in a widespread and diffuse fashion from many sources, which may include the nerve terminal.
机译:1.用富含ACh受体通道的非洲爪蟾肌细胞膜紧密贴合的外向外紧贴片直接测量了从酶暴露的青蛙运动神经末梢释放的乙酰胆碱(ACh)。当放置在靠近终端突触表面的位置时,这种膜片会从终端的几微米长处检测到神经诱发的膜片电流(EPC)和自发的定量“微型”膜片电流(MPC),以响应ACh从最近的三个到五个活动区域释放。 2.整个制剂中ACh外排的化学测量表明,自发释放速率为4.1 pmol(2 h)-1,并且酶处理和对照制剂的静息外排无显着差异。经酶处理与对侧对照肌肉外排的比率平均为1.17,表明酶处理不影响自发性ACh释放。 Vesamicol(1.7 microM)阻止突触小泡中的ACh转运蛋白,将ACh的自发释放降低至对照的67%。 3.在没有神经刺激的情况下,邻近神经末梢的由外而外的贴片探针记录的单通道开口的频率非常低(1-2分钟-1),并且在数百微米的距离上几乎没有变化,这表明如果ACh不断以非定量的方式从终端泄漏,则终端上活性区域附近的释放量将低于补丁检测的极限。 4.直接测量贴片的敏感性,再加上计算出的ACh通量率,得出的结论是,从青蛙神经末梢突触表面非定量释放的ACh量少于预期的量的十分之一。所有非定量释放均来自末端膜的该区域。 5.在一系列单神经冲击或50 Hz的神经刺激序列之后,异步单通道开口的频率增加了几秒钟。通道开口的这种瞬态增加对贴片电极远离活动部位的明显距离(4微米)的移动或先前报道的阻止非定量发射器泄漏的操作(包括添加10 mM-Ca2 +或1.7)不敏感。将microM-vesamicol倒入浴中。这些通道的开放似乎是由于源自许多诱发的量子的ACh的积累,而不是由于神经刺激导致局部增加的非定量ACh释放的影响。 6.我们得出的结论是,成年蛙末端的变送器泄漏要么位于神经末梢突触表面以外的其他源头,要么从许多可能来自神经末梢的源头以广泛扩散的方式释放出来。

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