Carvalho C M, Bandeira-Duarte C, Ferreira I L, Carvalho A P
Departamento de Zoologia, Universidade de Coimbra, Portugal.
Neurochem Res. 1991 Jul;16(7):763-72. doi: 10.1007/BF00965685.
In this study we investigated the role of external monovalent cations, and of intracellular Ca2+ concentration ([Ca2+]i) in polarized and depolarized rat cerebral cortex synaptosomes on the release of [3H]-gamma-aminobutyric acid (3H-GABA). We found that potassium-depolarization, in the absence of Ca2+, of synaptosomes loaded with 3H-GABA releases 7.4 +/- 2.1% of the accumulated neurotransmitter, provided that the external medium contains Na+, and an additional 19.0 +/- 2.5% is released upon adding 1.0 mM CaCl2 to the exterior. The Ca(2+)-independent release component does not occur in a choline medium and it is only 3.4 +/- 0.8% of the 3H-GABA accumulated in a Li+ medium, but both ions support the Ca(2+)-dependent release of 3H-GABA (13.4 +/- 0.6% in choline and 15.4 +/- 1.5% in Li+), which suggests that the exocytotic release is independent of the external monovalent cation present, whereas the carrier-mediated release specifically requires Na+ outside. Furthermore, previous release of the cytosolic 3H-GABA due to predepolarization in the absence of Ca2+ does not influence the amount of 3H-GABA subsequently released by exocytosis due to Ca2+ addition (19.1 +/- 2.5% or 19.1 +/- 1.1%, respectively). In choline or Li+ medium, the value of the [Ca2+]i is raised by Na+/Ca2+ exchange to 663 +/- 75 nM or 782 +/- 54 nM, respectively, within three minutes after adding 1.0 mM Ca2+, in the absence of depolarization, and parallel release experiments show no release of 3H-GABA in the choline medium, but a substantial release (7.1 +/- 2.1%) of 3H-GABA occurs in the Li+ medium without depolarization. Subsequent K(+)-depolarization shows normal Ca(2+)-dependent release of 3H-GABA in the choline medium (14.1 +/- 2.0%) but only 8.6 +/- 1.1% release in the Li+ medium, which suggests that raising the [Ca2+]i by Na+/Ca2+ exchange, without depolarization, supports some exocytotic release in Li+, but not in choline media. The role of [Ca2+]i and of membrane depolarization in the release process is discussed on the basis of the results obtained and other relevant observations which suggest that both Ca2+ and depolarization are essential for optimal exocytotic release of GABA.
在本研究中,我们调查了细胞外单价阳离子以及细胞内钙离子浓度([Ca2+]i)对极化和去极化大鼠大脑皮层突触体释放[3H]-γ-氨基丁酸(3H-GABA)的作用。我们发现,在无Ca2+的情况下,用3H-GABA加载的突触体进行钾去极化,若细胞外介质含有Na+,则会释放7.4±2.1%的累积神经递质,向外部添加1.0 mM CaCl2后会额外释放19.0±2.5%。不依赖Ca2+的释放成分在胆碱介质中不会出现,在Li+介质中积累的3H-GABA中仅占3.4±0.8%,但这两种离子都支持3H-GABA的Ca2+依赖性释放(胆碱介质中为13.4±0.6%,Li+介质中为15.4±1.5%),这表明胞吐释放与存在的细胞外单价阳离子无关,而载体介导的释放特别需要外部的Na+。此外,在无Ca2+的情况下预去极化导致的胞质3H-GABA先前释放,并不影响随后因添加Ca2+而通过胞吐作用释放的3H-GABA量(分别为19.1±2.5%或19.1±1.1%)。在胆碱或Li+介质中,在添加1.0 mM Ca2+且无去极化的情况下,通过Na+/Ca2+交换,[Ca2+]i的值在三分钟内分别升高到663±75 nM或782±54 nM,平行释放实验表明胆碱介质中无3H-GABA释放,但在无去极化的Li+介质中有大量3H-GABA释放(7.1±2.1%)。随后的K+去极化显示胆碱介质中3H-GABA有正常的Ca2+依赖性释放(14.1±2.0%),但Li+介质中仅释放8.6±1.1%,这表明在无去极化的情况下通过Na+/Ca2+交换提高[Ca2+]i,支持Li+介质中的一些胞吐释放,但不支持胆碱介质中的释放。基于所得结果和其他相关观察讨论了[Ca2+]i和膜去极化在释放过程中的作用,这些结果和观察表明Ca2+和去极化对于GABA的最佳胞吐释放都是必不可少的。