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Gamma-Aminobutyric Acid Binding to Receptor Sites in the Rat Central Nervous System

机译:γ-氨基丁酸与大鼠中枢神经系统中的受体位点结合。

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摘要

[3H]Gamma-aminobutyric acid (GABA) binds to synaptic membrane fractions of rat brain in a selective fashion representing an interaction with postsynaptic GABA receptors. Inhibition of [3H]GABA binding by a variety of amino acids closely parallels their ability to mimic the synaptic inhibitory actions of GABA and does not correlate with their relative affinity for the presynaptic synaptosomal GABA uptake system. [3H]GABA binding is saturable with an affinity constant of about 0.1 μM. The GABA antagonist bicuculline inhibits [3H]GABA binding with half maximal effects at 5 μM, whereas it requires a concentration of 0.5 mM to reduce synaptosomal GABA uptake by 50%. In subcellular fractionation experiments [3H]GABA binding is most enriched in crude synaptic membranes. [3H]GABA binding is greatest in the cerebellum, least in the spinal cord and medulla oblongatapons, with intermediate values in the thalamus, hippocampus, hypothalamus, cerebral cortex, midbrain, and corpus striatum.
机译:[ 3 H]γ-氨基丁酸(GABA)以选择性的方式与大鼠脑的突触膜级分结合,代表与突触后GABA受体的相互作用。各种氨基酸对[ 3 H] GABA结合的抑制作用与其模拟GABA突触抑制作用的能力非常相似,并且与它们对突触前突触体GABA摄取系统的相对亲和力无关。 [ 3 H] GABA结合是可饱和的,亲和常数约为0.1μM。 GABA拮抗剂双小分子抑制[ 3 H] GABA的结合在5μM时发挥最大作用,而其浓度为0.5 mM才能使突触体GABA吸收降低50%。在亚细胞分离实验中,[ 3 H] GABA结合最丰富于粗突触膜。 [ 3 H] GABA结合在小脑中最大,在脊髓和延髓中最少,在丘脑,海马,下丘脑,大脑皮层,中脑和纹状体中具有中等值。

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