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GABA_B受体的最新进展:从药理学到分子生物学(英文)
引用本文:Ong J,Kerr DI. GABA_B受体的最新进展:从药理学到分子生物学(英文)[J]. Acta pharmacologica Sinica, 2000, 21(2): 111-123
作者姓名:Ong J  Kerr DI
作者单位:Department of Anaesthesia and Intensive Care,The University of Adelaide,Ade-laide,South Australia 5005,Australia,Department of Anaesthesia and Intensive Care,The University of Adelaide,Ade-laide,South Australia 5005,Australia
摘    要:Bicuculline-insensitive receptors for the inhibitory neurotransmitter γ-aminobutyric acid (GABA), GABAB receptors, are a distinct subclass of receptors that mediate depression of synaptic transmission and contribute to neu-ronal inhibition. When activated, these receptors reduce transmission at excitatory and inhibitory synapses, as a result of an increase in K conductance, or a decrease in voltage-dependent Ca2 currents. They are also linked to G-proteins, or intracellular effector systems in a very complex manner. The recent development of highly specific and potent agonists and antagonists for these receptors has led to a much better understanding of their physiology and pharmacology, including their heterogeneity, as well as their molecular biology. Over the past year, expression and cloning studies have contributed to major advances in characterizing GABAB receptor structure, with the discovery of the amino acid sequences of GABABRla/R1b splice variants and GABABR2 receptors. These isoforms are

关 键 词:γ-氨基丁酸  GABA-B受体  GABA_BR2受体  巴氯芬  GABA受体激动剂  GABA受体拮抗剂

Recent advances in GABAB receptors: from pharmacology to molecular biology
Ong J,Kerr D I. Recent advances in GABAB receptors: from pharmacology to molecular biology[J]. Acta pharmacologica Sinica, 2000, 21(2): 111-123
Authors:Ong J  Kerr D I
Affiliation:Department of Anaesthesia and Intensive Care, University of Adelaide, Adelaide, South Australia 5005, Australia. jong@medicine.adelaide.edu.au
Abstract:Bicuculline-insensitive receptors for the inhibitory neurotransmitter gamma-aminobutyric acid (GABA), GABAB receptors, are a distinct subclass of receptors that mediate depression of synaptic transmission and contribute to neuronal inhibition. When activated, these receptors reduce transmission at excitatory and inhibitory synapses, as a result of an increase in K+ conductance, or a decrease in voltage-dependent Ca2+ currents. They are also linked to G-proteins, or intracellular effector systems in a very complex manner. The recent development of highly specific and potent agonists and antagonists for these receptors has led to a much better understanding of their physiology and pharmacology, including their heterogeneity, as well as their molecular biology. Over the past year, expression and cloning studies have contributed to major advances in characterizing GABAB receptor structure, with the discovery of the amino acid sequences of GABABR1a/R1b splice variants and GABABR2 receptors. These isoforms are widely distributed throughout the nervous system, and can be functionally expressed. Importantly, GABABR2 receptors can form a heteromeric assembly with GABABR1 proteins to operate as a heterodimer that displays robust coupling to inward-rectifying K+ channels, as well as inhibition of forskolin-stimulated adenylate cyclase activity. Further insights underlying the mechanisms of GABAB receptor functions can now be gained, leading ultimately to the therapeutic potential of drugs acting at these sites. It is increasingly clear that new information on GABAB receptor molecular structure will provide a plethora of targets for pharmaceutical intervention in areas such as drug addiction, nociception and absence seizures. This review summarizes the renewed efforts, and highlights the recent advances emerging in this field.
Keywords:GABA  GABA-B receptors  GABABR2 receptors  baclofen  GABA agonists  GABA antagonists
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