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不同大鼠脑区中内源性兴奋性含硫氨基酸的体外释放

In vitro release of endogenous excitatory sulfur-containing amino acids from various rat brain regions.

作者信息

Do K Q, Mattenberger M, Streit P, Cuénod M

出版信息

J Neurochem. 1986 Mar;46(3):779-86. doi: 10.1111/j.1471-4159.1986.tb13040.x.

Abstract

Efflux of various amino acids from rat brain slices was determined under resting or depolarizing conditions. Slices of neocortex, hippocampus, striatum, cerebellum, mesodiencephalon, pons-medulla, and spinal cord were depolarized by K+ (50 mM) or veratrine (33 micrograms/ml). The 4-N,N-dimethylamino-azobenzene-4'-isothiocyanate (DABITC) derivatization method of Chang [Biochem. J. 199, 537-545 (1981)] for HPLC was adapted for analysis of amino acids and peptides in superfusion solutions. It allowed the separation and simultaneous detection of the sulfur-containing amino acids cysteine sulfinic acid (CSA), cysteic acid (CA), homocysteine sulfinic acid (HCSA), and homocysteic acid (HCA) at the picomole level. All four were shown to be released on depolarization in a Ca2+-dependent manner from brain slices. CSA and HCSA were released from cortex, hippocampus, mesodiencephalon, and, for HCSA only, striatum. HCA release, observed in all regions, was most prominent in cortex and hippocampus. CA was slightly increased by depolarization in hippocampus and mesodiencephalon. These sulfur-containing amino acids have been shown to exert an excitatory action on CNS neurons. The fact that these sulfur-containing amino acids are released as endogenous substances from nervous tissue supports the hypothesis that they play a role in CNS neurotransmission.

摘要

在静息或去极化条件下测定了大鼠脑片各种氨基酸的外流情况。用K⁺(50 mM)或藜芦碱(33微克/毫升)使新皮层、海马体、纹状体、小脑、中脑间脑、脑桥延髓和脊髓的脑片去极化。采用Chang [《生物化学杂志》199, 537 - 545 (1981)] 的4 - N,N - 二甲基氨基 - 偶氮苯 - 4'- 异硫氰酸酯(DABITC)衍生化方法用于高效液相色谱法分析灌流液中的氨基酸和肽。该方法能够在皮摩尔水平分离并同时检测含硫氨基酸半胱氨酸亚磺酸(CSA)、半胱氨酸(CA)、同型半胱氨酸亚磺酸(HCSA)和同型半胱氨酸(HCA)。结果表明,所有这四种氨基酸在去极化时均以Ca²⁺依赖的方式从脑片中释放出来。CSA和HCSA从皮层、海马体、中脑间脑释放,仅HCSA还从纹状体释放。在所有区域均观察到HCA的释放,在皮层和海马体中最为显著。在海马体和中脑间脑,去极化使CA略有增加。这些含硫氨基酸已被证明对中枢神经系统神经元具有兴奋作用。这些含硫氨基酸作为内源性物质从神经组织中释放这一事实支持了它们在中枢神经系统神经传递中发挥作用的假说。

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