首页> 美国卫生研究院文献>The Journal of Physiology >Calcium channels involved in synaptic transmission at the mature and regenerating mouse neuromuscular junction.
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Calcium channels involved in synaptic transmission at the mature and regenerating mouse neuromuscular junction.

机译:钙通道参与成熟和再生的小鼠神经肌肉连接处的突触传递。

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摘要

1. The involvement of the different types of voltage-dependent calcium channels (VDCCs) in synaptic transmission at the mature and newly formed mammalian neuromuscular junction was studied by evaluating the effects of L-, P/Q- and N-type VDCC antagonists on transmitter release in normal and reinnervating levator auris preparations of adult mice. 2. Nerve-evoked transmitter release was blocked by omega-agatoxin IVA (omega-AgaIVA), a P/Q-type VDCC blocker, both in normal and reinnervating endplates (100 nM omega-AgaIVA caused > 90% inhibition). The N-type VDCC antagonist omega-conotoxin GVIA (omega-CgTX; 1 and 5 microM), as occurs in normal preparations, did not significantly affect this type of release during reinnervation. Nitrendipine (1-10 microM), an L-type VDCC blocker, strongly antagonized release in reinnervating muscles (approximately 40-69% blockade) and lacked any effect in normal preparations. 3. In reinnervating muscles, spontaneous release was not dependent on Ca2+ entry through either P- or L-type VDCCs. Neither 100 nM omega-AgaIVA nor 10 microM nitrendipine affected the miniature endplate potential (MEPP) frequency or amplitude. 4. At the newly formed endplates, K(+)-evoked release was dependent on Ca2+ entry through VDCCs of the P-type family (100 nM omega-AgaIVA reduced approximately 70% of the K(+)-evoked MEPP frequency). L-type VDCCs were found not to participate in this type of release (10 microM nitrendipine lacked any effect). 5. In reinnervating muscles, the L-type VDCC blocker, nitrendipine (10 microM), provoked a significant increase (approximately 25%) in the latency of the evoked endplate potential (EPP). This drug also caused an increase (approximately 0.3 ms) in the latency of the presynaptic currents. The P/Q- and Ny-type VDCC blockers did not affect the latency of the EPP. 6. These results show that at newly formed mouse neuromuscular junctions, as occurs in mature preparations, VDCCs of the P-type family play a prominent role in evoked transmitter release whereas N-type channels are not involved in this process. In addition, signal conduction and transmitter release become highly sensitive to nitrendipine during reinnervation. This suggests that L-type VDCCs may play a role in synaptic transmission at the immature mammalian neuromuscular junction.
机译:1.通过评估L型,P / Q型和N型VDCC拮抗剂对LDC,P / Q型和N型VDCC拮抗剂对神经元的影响,研究了不同类型的电压依赖性钙通道(VDCC)在成熟和新形成的哺乳动物神经肌肉接头中的突触传递中的作用。正常和神经支配的成年小鼠提肛耳发射器释放。 2.在正常和再激活终板上(100 nM omega-AgaIVA引起> 90%抑制),P / Q型VDCC阻滞剂Omega-agatoxin IVA(omega-AgaIVA)阻断了神经诱发的递质释放。 N型VDCC拮抗剂ω-芋螺毒素GVIA(omega-CgTX; 1和5 microM)发生在正常制剂中,在神经支配期间并未显着影响这种类型的释放。尼群地平(1-10 microM),一种L型VDCC阻滞剂,在神经肌肉中强烈拮抗释放(约40-69%阻滞),在正常制剂中没有任何作用。 3.在神经肌肉中,自发释放不依赖于钙离子通过P型或L型VDCC进入。 100 nM omega-AgaIVA和10 microM尼群地平都不会影响微型终板电位(MEPP)的频率或振幅。 4.在新形成的终板上,K(+)引起的释放取决于通过P型家族的VDCC进入Ca2 +(100 nM omega-AgaIVA降低了K(+)引起的MEPP频率的70%)。发现L型VDCC不参与这种释放(10 microM尼群地平没有任何作用)。 5.在神经肌肉中,L型VDCC阻滞剂硝苯地平(10 microM)引起了终板电位(EPP)潜伏期的显着增加(约25%)。该药物还引起突触前电流潜伏期的增加(约0.3毫秒)。 P / Q型和Ny型VDCC阻滞剂不影响EPP的等待时间。 6.这些结果表明,在成熟的制剂中出现的新形成的小鼠神经肌肉接头处,P型家族的VDCC在诱发的递质释放中起着重要作用,而N型通道不参与该过程。另外,在神经支配期间,信号传导和发射器释放对尼群地平变得高度敏感。这表明L型VDCC可能在未成熟的哺乳动物神经肌肉接头处的突触传递中发挥作用。

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