首页> 美国卫生研究院文献>The Journal of Physiology >Inactivation of acetylcholine release from Torpedo synaptosomes in response to prolonged depolarizations.
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Inactivation of acetylcholine release from Torpedo synaptosomes in response to prolonged depolarizations.

机译:鱼雷突触体中乙酰胆碱释放的失活响应长时间去极化。

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摘要

The release of acetylcholine (ACh) from purely cholinergic Torpedo synaptosomes was monitored continuously using a chemiluminescent assay (Israël & Lesbats, 1981 a, b). Upon prolonged K+ depolarization in the presence of Ca2+, the release of ACh was transient and returned to a steady low level in about 3 min. Addition of the Ca2+ ionophore A23187 triggered the release again, suggesting that neither depletion of the transmitter store nor an inhibition of the release mechanism itself were involved in this phasic response, but rather an inactivation of the Ca2+ entry. The release response evoked by adding Ca2+ back after exposure of the synaptosomes to high K+ (70 mM) and low Ca2+ (0.57 mM) solution inactivates as a function of the duration of the pre-depolarization with a two-component time course with rapid (tau = 5.5 s) and slow phases (tau = 143 s). This response to Ca2+ addition was more strikingly reduced as the level of depolarization during pre-treatment was increased. The inactivation was found to be dose dependent with respect to the amount of Ca2+ present during the pre-depolarization period (conditioning Ca2+). Moreover, the presence of EGTA during pre-treatment with high-K+ solutions increased the response to applied Ca2+. These observations suggest that Ca2+ entry itself was responsible for this inactivation. No inactivation was found when ACh release was induced by the depolarizing agent Gramicidin D, except when external Na+ was replaced by Li+. This result indicates that part of the Ca2+ influx promoted by Gramicidin D depends on a Na+ entry, and may be mediated by the Na-Ca exchange mechanism.
机译:使用化学发光测定法连续监测从纯胆碱能鱼雷突触体释放的乙酰胆碱(ACh)(Israël&Lesbats,1981 a,b)。在Ca2 +存在下延长K +去极化后,ACh的释放是短暂的,并在约3分钟内恢复到稳定的低水平。 Ca 2+离子载体A23187的添加再次触发了释放,这表明递质存储的耗竭或释放机制本身的抑制都与该相反应无关,而与Ca 2+进入的失活无关。突触小体暴露于高K +(70 mM)和低Ca2 +(0.57 mM)溶液后,通过添加Ca2 +引起的释放反应随着去极化前持续时间的变化而失活,该过程具有两组分的时间过程,快速( tau = 5.5 s)和慢相(tau = 143 s)。随着预处理过程中去极化水平的增加,对Ca2 +添加的反应显着降低。发现失活与去极化前阶段(调节Ca 2+)中存在的Ca 2+的量有关。此外,在用高K +溶液进行预处理的过程中,EGTA的存在增加了对所施加的Ca2 +的响应。这些观察结果表明,Ca 2+进入本身是造成这种失活的原因。当用去极化剂Gramicidin D诱导ACh释放时,没有发现失活,除了外部Na +被Li +替代时。该结果表明,由霉菌素D促进的Ca 2+内流的一部分取决于Na +的进入,并且可能由Na-Ca交换机制介导。

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