Smart T G, Constanti A
Proc R Soc Lond B Biol Sci. 1982 Jun 22;215(1200):327-41. doi: 10.1098/rspb.1982.0045.
The effect of zinc (and copper) was investigated on the lobster muscle gamma-aminobutyric acid (GABA) receptor. Zinc (10 microns-1 mM) depressed the GABA-evoked conductance increase in a fully reversible manner by possibly binding to an imidazole group, suggested from pH titration studies on the evoked-chloride conductance. Other transition metal (period 4) divalent cations (up to 500 microM) were inactive in antagonizing GABA responses. Variation of external chloride or anion substitution did not perturb the zinc antagonism; however, decreasing the pH markedly decreased the potency of zinc. A possible explanation for these results is discussed. Although the zinc antagonism resembled that produced by picrotoxinin, combination of these two agents depressed the GABA dose--conductance curve in a manner expected for two antagonists acting on independent sites. The zinc binding site was also discrete from the GABA recognition site; the results are interpreted in terms of a distinct binding site for zinc and H+. The distortion of an agonist dose--response curve by formation of an inactive agonist-divalent cation complex is discussed; however, complexation of GABA did not explain the observed antagonism by zinc. By comparison, zinc had no effect on the GABA responses of rat ganglionic neurons. It is concluded that the zinc binding site, on lobster muscle, may be an important modulatory site for the GABA-evoked chloride conductance.
研究了锌(和铜)对龙虾肌肉γ-氨基丁酸(GABA)受体的影响。锌(10微米至1毫摩尔)可能通过与咪唑基团结合,以完全可逆的方式抑制GABA诱发的电导增加,这是根据对诱发氯离子电导的pH滴定研究得出的。其他过渡金属(第4周期)二价阳离子(高达500微摩尔)在拮抗GABA反应方面无活性。外部氯离子的变化或阴离子替代并未干扰锌的拮抗作用;然而,降低pH值会显著降低锌的效力。文中讨论了这些结果的可能解释。尽管锌的拮抗作用类似于印防己毒素产生的作用,但这两种药物的组合以作用于独立位点的两种拮抗剂预期的方式压低了GABA剂量-电导曲线。锌结合位点也与GABA识别位点不同;结果根据锌和H+的独特结合位点进行了解释。文中讨论了通过形成无活性的激动剂-二价阳离子复合物对激动剂剂量-反应曲线的扭曲;然而,GABA的络合并不能解释观察到的锌的拮抗作用。相比之下,锌对大鼠神经节神经元的GABA反应没有影响。得出的结论是,龙虾肌肉上的锌结合位点可能是GABA诱发氯离子电导的一个重要调节位点。