首页> 外文期刊>The Journal of Physiology >Protein kinase C potentiates transmitter release from the chick ciliary presynaptic terminal by increasing the exocytotic fusion probability (see comments)
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Protein kinase C potentiates transmitter release from the chick ciliary presynaptic terminal by increasing the exocytotic fusion probability (see comments)

机译:蛋白激酶C通过增加胞外融合概率来增强小鸡突触前突触末端的递质释放(参见评论)

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1. The giant presynaptic terminal of chick ciliary ganglion was used to examine how protein kinase C (PKC) modulates neurotransmitter release. Cholinergic excitatory postsynaptic currents (EPSCs) were recorded under whole-cell voltage clamp. 2. Although the EPSC was potentiated by phorbol ester (phorbol 12-myristate 13-acetate, PMA; 0.1 microM) in a sustained manner, the nicotine-induced current was unaffected. PMA increased the quantal content to 2.4 +/- 0.4 (n = 9) of control without changing the quantal size. 3. The inactive isoform of PMA, 4alpha-PMA, showed no significant effect on EPSCs. The PMA-induced potentiation was antagonized by two PKC inhibitors with different modes of action, sphingosine (20 microM) and bisindolylmaleimide I (10 microM). 4. When stimulated by twin pulses of short interval, the second EPSC was on average larger than the first EPSC (paired-pulse facilitation; PPF). PMA significantly decreased the PPF ratio with a time course similar to that of the potentiation of the first EPSC. 5. PMA did not affect resting [Ca2+]i or the action potential-induced [Ca2+]i increment in the giant presynaptic terminals. 6. The effect of PMA was less at 10 mM [Ca2+]o than at 1 mM [Ca2+]o. 7. When a train of action potentials was generated with a short interval, the EPSC was eventually depressed and reached a steady-state level. The recovery process followed a simple exponential relation with a rate constant of 0.132 +/- 0.029 s-1. PMA did not affect the recovery rate constant of EPSCs from tetanic depression. In addition, PMA did not affect the steady-state EPSC which should be proportional to the refilling rate of the readily releasable pool of vesicles. 8. These results conflict with the hypothesis that PKC upregulates the size of the readily releasable pool or the number of release sites. PKC appears to upregulate the Ca2+ sensitivity of the process that controls the exocytotic fusion probability.
机译:1.鸡睫状神经节的突触前巨末端被用来检查蛋白激酶C(PKC)如何调节神经递质的释放。在全细胞电压钳下记录胆碱能兴奋性突触后电流(EPSC)。 2.尽管EPSC被佛波酯(佛波12-肉豆蔻酸酯13-乙酸酯,PMA; 0.1 microM)持续增强,但尼古丁诱导的电流不受影响。 PMA将定量含量增加到对照的2.4 +/- 0.4(n = 9),而没有更改定量大小。 3. PMA的非活性同工型4alpha-PMA对EPSC没有明显影响。 PMA诱导的增强作用被两种具有不同作用方式的PKC抑制剂,鞘氨醇(20 microM)和双吲哚基马来酰亚胺I(10 microM)拮抗。 4.当受到短时间间隔的双脉冲刺激时,第二个EPSC平均大于第一个EPSC(成对脉冲促进; PPF)。 PMA以与第一个EPSC增强相似的时间过程显着降低了PPF比。 5. PMA不会影响静止的[Ca2 +] i或动作电位诱导的[Ca2 +] i在巨突触前末端的增加。 6.在10 mM [Ca2 +] o时,PMA的作用小于在1 mM [Ca2 +] o时的作用。 7.当在短时间内产生一系列动作电位时,EPSC最终被压低并达到稳态水平。恢复过程遵循简单的指数关系,速率常数为0.132 +/- 0.029 s-1。 PMA不会影响强直性抑郁症的EPSC恢复率常数。此外,PMA不会影响稳态EPSC,稳态EPSC应当与易于释放的囊泡补充率成正比。 8.这些结果与PKC上调易于释放池的大小或释放位点数量的假设相矛盾。 PKC似乎上调了控制胞吐融合可能性的过程的Ca2 +敏感性。

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