首页> 美国卫生研究院文献>The Journal of Physiology >Calcium released by photolysis of DM-nitrophen stimulates transmitter release at squid giant synapse.
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Calcium released by photolysis of DM-nitrophen stimulates transmitter release at squid giant synapse.

机译:DM-硝基苯的光解所释放的钙会刺激鱿鱼巨突触中的递质释放。

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摘要

1. Transmitter release at the squid giant synapse was stimulated by photolytic release of Ca2+ from the 'caged' Ca2+ compound DM-nitrophen (Kaplan & Ellis-Davies, 1988) inserted into presynaptic terminals. 2. Competing binding reactions cause the amount of Ca2+ released by DM-nitrophen photolysis to depend on the concentrations of DM-nitrophen, total Ca2+, Mg+, ATP and native cytoplasmic Ca2+ buffer. Measurements of presynaptic [Ca2+] changes by co-injection of the fluorescent indicator dye Fura-2 show that DM-nitrophen photolysis causes a transient rise in Ca2+ followed by decay within about 150 ms to an increased steady-state level. 3. Rapid photolysis of Ca2(+)-loaded nitrophen within the presynaptic terminal was followed in less than a millisecond by depolarization of the postsynaptic membrane. As with action potential-evoked excitatory postsynaptic potentials (EPSPs), the light-evoked response was partially and reversibly blocked by 1-3 mM-kainic acid which desensitizes postsynaptic glutamate receptors. 4. Release was similar in magnitude and rate to normal action potential-mediated EPSPs. 5. The release of transmitter by photolysis of Ca2(+)-loaded DM-nitrophen was not affected by removal of Ca2+ from the saline or addition of tetrodotoxin. Photolysis of DM-nitrophen injected into presynaptic terminals without added Ca2+ did not stimulate release of transmitter nor did it interfere with normal action potential-mediated release. 6. Stimulation of presynaptic action potentials in Ca2(+)-free saline during the light-evoked response did not elicit increased release of transmitter if the ganglion was bathed in Ca2(+)-free saline, i.e. in the absence of Ca2+ influx. Increasing the intensity of the light or stimulating presynaptic action potentials in Ca2(+)-containing saline increased the release of transmitter. Therefore the failure of presynaptic voltage change to increase transmitter release resulting from release of caged Ca2+ was not due to saturation or inhibition of the release mechanism by light-released Ca2+. 7. Decreasing the temperature of the preparation increased the delay to onset of the light-evoked response and reduced its amplitude and rate of rise to an extent similar to that observed for action potential-evoked EPSPs.
机译:1.鱿鱼巨突触中的发射物释放是由插入笼状突触前末端的“笼中” Ca2 +化合物DM-硝基酚的光解释放的Ca2 +刺激的(Kaplan和Ellis-Davies,1988)。 2.竞争性结合反应导致DM-硝基苯光解释放的Ca2 +量取决于DM-硝基苯的浓度,总Ca2 +,Mg +,ATP和天然细胞质Ca2 +缓冲液。通过共注入荧光指示剂染料Fura-2来测量突触前[Ca2 +]的变化,表明DM-硝基苯光解会引起Ca2 +的瞬时升高,然后在约150 ms内衰减至稳态水平。 3.在不到一毫秒的时间内,通过突触后膜的去极化,在突触前末端内快速加载Ca2(+)硝基酚的光解作用。与动作电位诱发的兴奋性突触后电位(EPSPs)一样,光诱发的反应被1-3 mM钾酸(可对突触后谷氨酸受体减敏)部分和可逆地阻断。 4.释放的幅度和速率与正常动作电位介导的EPSP相似。 5.通过负载Ca2(+)的DM-硝基苯的光解而释放的递质不受盐水中Ca2 +的去除或河豚毒素的添加的影响。不添加Ca2 +的突触前末端注射的DM-硝基酚的光解作用不会刺激递质的释放,也不会干扰正常动作电位介导的释放。 6.如果神经节浸入无Ca2 +的盐水中,即在没有Ca2 +涌入的情况下,在光诱发反应期间刺激无Ca2 +的盐水中的突触前动作电位不会引起递质释放的增加。增加光的强度或刺激含Ca2(+)的盐水中的突触前动作电位,会增加递质的释放。因此,由笼状Ca 2+的释放引起的突触前电压变化未能增加递质的释放不是由于光释放的Ca 2+饱和或抑制了释放机理。 7.降低制剂的温度会增加光诱发反应的发作延迟,并降低其幅度和上升速率,其程度与动作电位诱发EPSPs所观察到的相似。

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