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Regulation of single quantal efficacy at the snake neuromuscular junction.

机译:蛇神经肌肉交界处的单个定量功效的调节。

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摘要

1. Postsynaptic responses to spontaneous quantal transmitter release have been compared among neuromuscular junctions in a thin snake muscle. For each junction the type, diameter, and input conductance, G(in) of the postsynaptic muscle fibre were determined. Particularly among fibres of a given type, G(in) was directly correlated with fibre diameter. 2. Miniature endplate potentials (MEPPs) were recorded intracellularly near endplates visualized with Nomarski optics. Mean MEPP amplitude decreased with increasing G(in) among fibres in one muscle. However, the dependence of mean amplitude upon G(in) was not ohmic, as would be expected if the underlying single quantal currents (miniature endplate currents, MEPCs) were of similar amplitude at all junctions. Instead, the relation between MEPPs and G(in) suggested that mean MEPC amplitudes, calculated as mean MEPP amplitude x G(in), increased with increasing G(in). 3. MEPCs were recorded directly using the two-microelectrode voltage clamp technique. Mean MEPC amplitudes depended systematically on G(in), again such that MEPCs were on average larger in fibres with higher G(in). 4. MEPCs were recorded extracellularly from small regions of endplates (underlying a few nerve terminal boutons). Amplitudes of MEPCs depended on G(in) or fibre diameter in the same manner as amplitudes of MEPCs recorded by intracellular voltage clamp. 5. When the anticholinesterase agent neostigmine was added to the bath, amplitude and duration of MEPPs, MEPCs, and extracellular MEPCs increased. However, the systematic dependence of mean MEPC amplitude on G(in) or fibre diameter remained. 6. Evoked subthreshold endplate potentials (EPPs) were recorded under conditions of low extracellular Ca2+. Endplate currents (EPP amplitudes x G(in)) were systematically larger in fibres with larger G(in), indicating regulation of evoked synaptic current in the muscle. The regulation was found to be due to a combination of increased quantal content and larger single quantal currents in larger (higher G(in)) fibres. 7. Synaptic size, assessed either by area of cholinesterase staining or number of terminal boutons, increased with increasing fibre diameter. Assuming that quantal content is proportional to synaptic size, this relation was sufficient to account for the observed increase in quantal content with increasing G(in) among fibres in the muscle, but was not alone sufficient to account for the observed regulation of evoked current. 8. It is concluded that the efficacy of individual transmitter quanta released at the snake neuromuscular junction is regulated such that large muscle fibres receive larger single quantal currents. Regulation of single quantal current contributes substantially to overall regulation of synaptic strength in the muscle.
机译:1.已经比较了薄蛇肌肉中神经肌肉接头对自发定量递质释放的突触后反应。对于每个连接点,确定突触后肌纤维的类型,直径和输入电导率G(in)。特别是在给定类型的纤维中,G(in)与纤维直径直接相关。 2.用Nomarski光学元件可视化地在靠近终板的细胞内记录微型终板电势(MEPP)。随着一只肌肉中纤维中G(in)的增加,平均MEPP振幅降低。但是,平均振幅对G(in)的依赖性不是欧姆性的,这是可以预期的,如果基础的单个定量电流(微型端板电流,MEPC)在所有结点处具有类似的振幅。取而代之的是,MEPP与G(in)之间的关系表明,平均MEPC振幅(以平均MEPP振幅x G(in)计算)随G(in)的增加而增加。 3.使用两微电极电压钳技术直接记录MEPC。平均MEPC振幅系统地取决于G(in),因此,在具有较高G(in)的光纤中,MEPC平均更大。 4. MEPCs是从终板的小区域(在一些神经末梢钮扣下面)在细胞外记录的。 MEPC的幅度取决于G(in)或纤维直径,其方式与细胞内电压钳制记录的MEPC的幅度相同。 5.当将抗胆碱酯酶药物新斯的明添加到浴液中时,MEPP,MEPC和细胞外MEPC的幅度和持续时间增加。但是,平均MEPC振幅对G(in)或纤维直径的系统依赖性仍然存在。 6.在低细胞外Ca2 +的条件下记录了诱发的亚阈值终板电位(EPP)。终板电流(EPP振幅x G(in))在具有较大G(in)的纤维中系统地较大,表明调节了肌肉中诱发的突触电流。发现调节是由于在较大(较高的G(in))纤维中增加的定量含量和较大的单个定量电流的组合。 7.突触大小(通过胆碱酯酶染色面积或末梢boutons数量评估)随纤维直径的增加而增加。假设数量含量与突触大小成正比,这种关系足以说明所观察到的数量含量随肌肉中纤维间G(in)的增加而增加,但不足以说明所观测到的诱发电流调节。 8.结论是,调节了蛇神经肌肉连接处释放的单个递质的功效,以使大的肌肉纤维接受较大的单个定量电流。单个定量电流的调节基本上有助于肌肉中突触强度的总体调节。

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