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油酸对大鼠脑突触体中神经递质转运及其他质膜功能的影响。

Effect of oleate on neurotransmitter transport and other plasma membrane functions in rat brain synaptosomes.

作者信息

Troeger M B, Rafalowska U, Erecińska M

出版信息

J Neurochem. 1984 Jun;42(6):1735-42. doi: 10.1111/j.1471-4159.1984.tb12765.x.

Abstract

The effects of fatty acids, oleate and palmitate, on gamma-aminobutyric acid (GABA), aspartate, and 3,4- dihydroxyphenylethylamine (dopamine) transport and a variety of other membrane functions were studied in rat brain synaptosomes at a constant lipid-to-protein ratio. Under the conditions utilized oleate, but not palmitate, caused statistically significant changes in synaptosomal functions. Oleic acid inhibited the uptake of the amino acid neurotransmitters and dopamine in a tetrodotoxin-insensitive manner; it also induced the release of neurotransmitters from synaptosomes. The synaptosomal membrane potential decreased and the maximum GABA accumulation ratio [( GABA]i/[GABA]o) declined in parallel. The same depolarizing effect was seen in the presence of 50 microM verapamil or when chloride was replaced by propionate. The rate of respiration was stimulated by the unsaturated fatty acid; neither verapamil (50 microM) nor ouabain (100 microM) was effective in preventing the increase in oxygen consumption. By contrast, ruthenium red substantially decreased the stimulatory effect of oleate. The intrasynaptosomal [Ca2+] was increased by 40%, whereas [Na+]i remained unaltered. It is postulated that under the conditions used the inhibition of neurotransmitter uptake and the decrease in their accumulation caused by oleate result from the depolarization of synaptosomes that arises, at least in part, from increased permeability of the plasma membrane to calcium ions.

摘要

在大鼠脑突触体中,以恒定的脂质与蛋白质比例研究了脂肪酸(油酸和棕榈酸)对γ-氨基丁酸(GABA)、天冬氨酸和3,4-二羟基苯乙胺(多巴胺)转运以及各种其他膜功能的影响。在所采用的条件下,油酸而非棕榈酸引起了突触体功能的统计学显著变化。油酸以对河豚毒素不敏感的方式抑制氨基酸神经递质和多巴胺的摄取;它还诱导神经递质从突触体释放。突触体膜电位降低,最大GABA积累率[(GABA)i/(GABA)o]也随之下降。在存在50微摩尔维拉帕米或用丙酸盐替代氯离子时,也观察到了相同的去极化效应。不饱和脂肪酸刺激呼吸速率;维拉帕米(50微摩尔)和哇巴因(100微摩尔)均无法有效阻止氧气消耗增加。相比之下,钌红显著降低了油酸的刺激作用。突触体内[Ca2+]增加了40%,而[Na+]i保持不变。据推测,在所采用的条件下,油酸导致的神经递质摄取抑制及其积累减少是由于突触体去极化所致,这种去极化至少部分源于质膜对钙离子通透性的增加。

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