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钙对鱿鱼神经元突触的作用。

The action of calcium on neuronal synapses in the squid.

作者信息

Miledi R, Slater C R

出版信息

J Physiol. 1966 May;184(2):473-98. doi: 10.1113/jphysiol.1966.sp007927.

Abstract
  1. The isolated stellate ganglion of the squid (L. pealii) was studied with intracellular and extracellular micro-electrodes. Three or four nerve fibres in the preganglionic nerve establish synaptic relations with the giant axon in the last stellar nerve. Accordingly, 1-3 small presynaptic spikes (< 1 mV) could be recorded from within the post-synaptic axon.2. A micro-electrode was inserted in the presynaptic fibre and used to polarize and record simultaneously. In the distal (giant) synapse, hyperpolarization of the ending produced an increase in the size of the presynaptic action potential and post-synaptic potential (PSP). Depolarization had the opposite effect. These effects of polarization took more than 10 sec to develop fully, and declined with a similar time course at the end of polarization. Analogous results were obtained with two other preganglionic fibres, which make contacts in the proximal synaptic region.3. The second of a pair of preganglionic impulses evoked a PSP larger than the first. This facilitation of PSP was sometimes accompanied by a small increase in the size of the second action potential in the presynaptic axon. At some shorter intervals, the second presynaptic action potential was reduced in amplitude, but the PSP was still increased. Hyperpolarization of the presynaptic terminal increased the size of both PSPs in a pair and abolished the facilitation. With stronger hyperpolarization the second PSP was even smaller than the first.4. Removing or reducing the Ca in the bathing fluid reversibly abolished the post-synaptic response. The small presynaptic spikes remained practically unaffected. In these conditions a nerve impulse still invaded the ending and normal action potentials could be recorded from the pre-synaptic terminal. This shows that electrical coupling between pre- and post-synaptic axons is insufficient to account for synaptic transmission.5. In low-Ca solution synaptic transmission could be restored locally by extracellular ionophoretic application of Ca to a small portion of the synapse. At sensitive spots a post-synaptic current (recorded with the Ca pipette) and PSP could be detected earlier than 1 sec after commencing the application of Ca.6. Ca was ineffective when injected intracellularly into the presynaptic fibre at a spot where extracellular ionophoresis of Ca restored the PSP.7. The results indicate that synaptic transmission in the squid stellate ganglion is not electrical but due to the release of an unidentified transmitter. Release of this transmitter by the presynaptic nerve impulse requires the presence of Ca in the external medium. During the impulse Ca would combine with a ;Ca-receptor' in the membrane and initiate the reactions which lead to transmitter release. It appears that the ;Ca-receptor' is only accessible from the outside of the membrane.
摘要
  1. 用细胞内和细胞外微电极对乌贼(太平洋褶柔鱼)分离出的星状神经节进行了研究。节前神经中的三四条神经纤维与最后一条星状神经中的巨大轴突建立了突触联系。因此,可从突触后轴突内记录到1 - 3个小的突触前峰电位(< 1 mV)。

  2. 将微电极插入突触前纤维,用于同时极化和记录。在远端(巨大)突触中,末梢的超极化使突触前动作电位和突触后电位(PSP)的幅度增大。去极化则产生相反的效果。这些极化效应需要超过10秒才能充分发展,并在极化结束时以类似的时间进程衰减。在近端突触区域建立联系的另外两条节前纤维也得到了类似的结果。

  3. 一对节前冲动中的第二个引起的PSP比第一个大。这种PSP的易化有时伴随着突触前轴突中第二个动作电位幅度的小幅增加。在一些较短的间隔时间,第二个突触前动作电位的幅度减小,但PSP仍然增大。突触前末梢的超极化增加了一对PSP的幅度,并消除了易化现象。超极化更强时,第二个PSP甚至比第一个还小。

  4. 去除或降低灌流液中的Ca可使突触后反应可逆地消失。小的突触前峰电位实际上不受影响。在这些条件下,神经冲动仍能侵入末梢,并且可从突触前末梢记录到正常的动作电位。这表明突触前和突触后轴突之间的电耦合不足以解释突触传递。

  5. 在低Ca溶液中,通过向突触的一小部分进行细胞外离子电泳施加Ca,可局部恢复突触传递。在敏感部位,在开始施加Ca后不到1秒就能检测到突触后电流(用Ca吸管记录)和PSP。

  6. 在细胞外离子电泳施加Ca恢复PSP的部位,将Ca细胞内注入突触前纤维时无效。

  7. 结果表明,乌贼星状神经节中的突触传递不是电传递,而是由于一种未鉴定的递质的释放。突触前神经冲动释放这种递质需要细胞外介质中存在Ca。在冲动期间,Ca会与膜中的一种“Ca受体”结合,并引发导致递质释放的反应。看来“Ca受体”只能从膜的外侧接触到。

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