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在青蛙运动神经末梢,神经冲动引发神经递质释放,而无需钙离子通过钙离子通道进入。

Neurotransmitter release evoked by nerve impulses without Ca2+ entry through Ca2+ channels in frog motor nerve endings.

作者信息

Silinsky E M, Watanabe M, Redman R S, Qiu R, Hirsh J K, Hunt J M, Solsona C S, Alford S, MacDonald R C

机构信息

Department of Molecular Pharmacology and Biological Chemistry, Northwestern University Medical School, IL 60611, USA.

出版信息

J Physiol. 1995 Feb 1;482 ( Pt 3)(Pt 3):511-20. doi: 10.1113/jphysiol.1995.sp020536.

Abstract
  1. The requirement for extracellular Ca2+ in the process of evoked acetylcholine (ACh) release by nerve impulses was tested at endplates in frog skeletal muscle. Ca(2+)-containing lipid vesicles (Ca2+ liposomes) were used to elevate cytoplasmic Ca2+ concentrations under conditions in which Ca2+ entry from the extracellular fluid was prevented. 2. In an extracellular solution containing no added Ca2+ and 1 mM Mg2+ ('Ca(2+)-free' solution), Ca2+ liposomes promoted the synchronous release of ACh quanta, reflected electrophysiologically as endplate potentials (EPPs), in response to temporally isolated nerve impulses. 3. Motor nerve stimulation generated EPPs during superfusion with Ca2+ liposomes in Ca(2+)-free solutions containing the Ca2+ channel blocker Co2+ (1 mM), and the Ca2+ chelator EGTA (2 mM). As a physiological control for Ca2+ leakage from the liposomes to the extracellular fluid, the effect of Ca2+ liposomes on asynchronous evoked ACh release mediated by Ba2+ was examined. In contrast to the effects of 0.2-0.3 mM extracellular Ca2+, which generated EPPs but antagonized Ba(2+)-mediated asynchronous ACh release, Ca2+ liposomes generated EPPs but did not reduce asynchronous release mediated by Ba2+. The effects of Ca2+ liposomes were thus not due to leakage of Ca2+ from the liposome to the extracellular fluid. 4. Morphological studies using fluorescently labelled liposomes in conjunction with a confocal microscope demonstrate that lipid is transferred from the liposomes to nerve endings and liposomal contents are delivered to the nerve terminal cytoplasm. 5. The results suggest that when intracellular Ca2+ is elevated using liposomes as a vehicle, evoked ACh release can occur in the absence of Ca2+ entry via Ca2+ channels.
摘要
  1. 在青蛙骨骼肌终板处,测试了神经冲动诱发乙酰胆碱(ACh)释放过程中对细胞外Ca2+的需求。在阻止细胞外液中Ca2+进入的条件下,使用含Ca(2+)的脂质体(Ca2+脂质体)来提高细胞质Ca2+浓度。2. 在不含添加Ca2+和1 mM Mg2+的细胞外溶液(“无Ca(2+)”溶液)中,Ca2+脂质体促进了ACh量子的同步释放,电生理上表现为终板电位(EPPs),以响应时间上分离的神经冲动。3. 在含有Ca2+通道阻滞剂Co2+(1 mM)和Ca2+螯合剂乙二醇双四乙酸(EGTA,2 mM)的无Ca(2+)溶液中,用Ca2+脂质体进行灌流时,运动神经刺激产生了EPPs。作为对Ca2+从脂质体泄漏到细胞外液的生理对照,研究了Ca2+脂质体对由Ba2+介导的异步诱发ACh释放的影响。与0.2 - 0.3 mM细胞外Ca2+的作用相反,后者产生EPPs但拮抗Ba(2+)介导的异步ACh释放,Ca2+脂质体产生EPPs但不减少由Ba2+介导的异步释放。因此,Ca2+脂质体的作用不是由于Ca2+从脂质体泄漏到细胞外液。4. 使用荧光标记脂质体结合共聚焦显微镜进行的形态学研究表明,脂质从脂质体转移到神经末梢,脂质体内容物被递送到神经末梢细胞质中。5. 结果表明,当使用脂质体作为载体提高细胞内Ca2+水平时,在没有通过Ca2+通道进入Ca2+的情况下,诱发的ACh释放也可以发生。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0309/1157778/27d12c36f14e/jphysiol00331-0040-a.jpg

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