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锌离子对士的宁敏感型甘氨酸受体的双相调节作用。

Biphasic modulation of the strychnine-sensitive glycine receptor by Zn2+.

作者信息

Bloomenthal A B, Goldwater E, Pritchett D B, Harrison N L

机构信息

Department of Anesthesia and Critical Care, University of Chicago, Illinois 60637.

出版信息

Mol Pharmacol. 1994 Dec;46(6):1156-9.

PMID:7808436
Abstract

The effects of extracellular applications of Zn2+ ions on the strychnine-sensitive glycine receptor were studied in cultured rat spinal cord neurons and with recombinant glycine receptors expressed in human embryonic kidney 293 cells. Nanomolar concentrations of Zn2+ enhanced the chloride ion current in response to brief applications of 100 microM glycine. The enhancement of glycine responses increased from 20 nM to 1 microM Zn2+. Higher concentrations of Zn2+ caused a reversal of the potentiation, followed by progressive inhibition of the glycine response up to approximately 20-50 microM Zn2+. The biphasic modulation by Zn2+ appeared essentially identical in native and recombinant glycine receptors. Biphasic Zn2+ modulation was observed both with picrotoxin-insensitive heteromeric (alpha 2/beta) receptors and with picrotoxin-sensitive homomeric receptors consisting only of alpha 2 subunits. This suggests that the alpha subunit alone is sufficient for formation of two distinct Zn2+ binding sites on the glycine receptor. The demonstration of Zn2+ modulation of the strychnine-sensitive glycine receptor is of potential physiological importance, in view of the likely range of subsynaptic Zn2+ concentrations to which the receptor is exposed.

摘要

在培养的大鼠脊髓神经元以及在人胚肾293细胞中表达的重组甘氨酸受体上,研究了细胞外应用锌离子(Zn2+)对士的宁敏感的甘氨酸受体的影响。纳摩尔浓度的Zn2+增强了对短暂应用100微摩尔甘氨酸的氯离子电流响应。甘氨酸反应的增强在Zn2+浓度从20纳摩尔增加到1微摩尔时增加。更高浓度的Zn2+导致增强作用的逆转,随后甘氨酸反应逐渐受到抑制,直至约20 - 50微摩尔Zn2+。Zn2+的双相调节在天然和重组甘氨酸受体中基本相同。在对印防己毒素不敏感的异源(α2/β)受体以及仅由α2亚基组成的对印防己毒素敏感的同源受体中均观察到双相Zn2+调节。这表明单独的α亚基足以在甘氨酸受体上形成两个不同的Zn2+结合位点。鉴于受体可能暴露于其中的突触下Zn2+浓度范围,Zn2+对士的宁敏感的甘氨酸受体调节的证明具有潜在的生理重要性。

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