Effects of Zinc, Mercury, or Lead on [3H]MK-801 and [3H]Fluorowillardiine Binding to Rat Synaptic Membranes

被引:0
|
作者
N. Berríos-Cartagena
M. M. Rubio-Dávila
I. Rivera-Delgado
M. M. Feliciano-Bonilla
E. A. De Cardona-Juliá
J. G. Ortiz
机构
[1] University of Puerto Rico School of Medicine,Department of Pharmacology and Toxicology
来源
Neurochemical Research | 2021年 / 46卷
关键词
Zinc; Lead; Mercury; [; H]MK-801; [; H]flurowillardiine;
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学科分类号
摘要
Glutamate (Glu) is considered the most important excitatory amino acid neurotransmitter in the mammalian Central Nervous System. Zinc (Zn) is co-released with Glu during synaptic transmission and interacts with Glutamate receptors and transporters. We performed binding experiments using [3H]MK-801 (NMDA), and [3H]Fluorowillardine (AMPA) as ligands to study Zn-Glutamate interactions in rat cortical synaptic membranes. We also examined the effects of mercury and lead on NMDA or AMPA receptors. Zinc at 1 nM, significantly potentiates [3H]MK-801 binding. Lead inhibits [3H]MK-801 binding at micromolar concentrations. At millimolar concentrations, Hg also has a significant inhibitory effect. These effects are not reversed by Zn (1 nM). Zinc displaces the [3H]FW binding curve to the right. Lead (nM) and Hg (μM) inhibit [3H]FW binding. At certain concentrations, Zn reverses the effects of these metals on [3H]FW binding. These specific interactions serve to clarify the role of Zn, Hg, and Pb in physiological and pathological conditions.
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页码:3159 / 3165
页数:6
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