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Two pharmacologically distinct sodium- and chloride-coupled high-affinity gamma-aminobutyric acid transporters are present in plasma membrane vesicles and reconstituted preparations from rat brain.

机译:在质膜囊泡和大鼠脑的重组制剂中存在两种药理学上不同的钠和氯偶联的高亲和力γ-氨基丁酸转运蛋白。

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摘要

Electrogenic sodium- and chloride-dependent gamma-aminobutyric acid (GABA) transport in crude synaptosomal membrane vesicles is partly inhibited by saturating levels of either of the substrate analogues cis-3-aminocyclohexanecarboxylic acid (ACHC) or beta-alanine. However, both of them together potently and fully inhibit the process. Transport of beta-alanine, which exhibits an apparent Km of about 44 microM, is also electrogenic and sodium and chloride dependent and competitively inhibited by GABA with a Ki of about 3 microM. This value is very similar to the Km of 2-4 microM found for GABA transport. On the other hand, ACHC does not inhibit beta-alanine transport at all. Upon solubilization of the membrane proteins with cholate and fractionation with ammonium sulfate, a fraction is obtained which upon reconstitution into proteoliposomes exhibits 4- to 10-fold-increased GABA transport. This activity is fully inhibited by low concentrations of ACHC and is not sensitive at all to beta-alanine. GABA transport in this preparation exhibits an apparent Km of about 2.5 microM and it is competitively inhibited by ACHC (Ki approximately 7 microM). These data indicate the presence of two GABA transporter subtypes in the membrane vesicles: the A type, sensitive to ACHC, and the B type, sensitive to beta-alanine.
机译:粗突触体膜囊泡中的电致钠和氯依赖性γ-氨基丁酸(GABA)转运部分受饱和底物类似物顺3-氨基环己烷羧酸(ACHC)或β-丙氨酸水平的抑制。但是,它们两者都有效并完全抑制了该过程。 β-丙氨酸的运输,它的表观Km约为44 microM,也是成电的,对钠和氯化物具有依赖性,并且被GABA竞争性抑制,Ki约为3 microM。该值与GABA转运的2-4 microM的Km非常相似。另一方面,ACHC完全不抑制β-丙氨酸的转运。用胆酸盐使膜蛋白溶解并用硫酸铵分级分离后,得到的级分在重组为蛋白脂质体后显示出GABA转运增加了4至10倍。此活性被低浓度的ACHC完全抑制,并且对β-丙氨酸完全不敏感。该制剂中的GABA转运表现出约2.5μM的表观Km,并且它被ACHC(Ki约7μM)竞争性抑制。这些数据表明在膜囊泡中存在两种GABA转运蛋白亚型:对ACHC敏感的A型和对β-丙氨酸敏感的B型。

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    Kanner, B I; Bendahan, A;

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  • 年度 1990
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