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对红藻氨酸受体具有特异性的海洋毒素新海葵毒素的新型类似物和立体异构体。

Novel analogs and stereoisomers of the marine toxin neodysiherbaine with specificity for kainate receptors.

作者信息

Lash L Leanne, Sanders James M, Akiyama Nobuyuki, Shoji Muneo, Postila Pekka, Pentikäinen Olli T, Sasaki Makoto, Sakai Ryuichi, Swanson Geoffrey T

机构信息

Department of Molecular Pharmacology and Biological Chemistry, Northwestern University Feinberg School of Medicine, 303 E. Chicago Ave., Chicago, IL 60611, USA.

出版信息

J Pharmacol Exp Ther. 2008 Feb;324(2):484-96. doi: 10.1124/jpet.107.129890. Epub 2007 Nov 21.

Abstract

Antagonists for kainate receptors (KARs), a family of glutamategated ion channels, are efficacious in a number of animal models of neuropathologies, including epilepsy, migraine pain, and anxiety. To produce molecules with novel selectivities for kainate receptors, we generated three sets of analogs related to the natural marine convulsant neodysiherbaine (neoDH), and we characterized their pharmacological profiles. Radioligand displacement assays with recombinant alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) and KARs demonstrated that functional groups at two positions on the neoDH molecule are critical pharmacological determinants; only binding to the glutamate receptor (GluR)5-2a subunit was relatively insensitive to structural modifications of the critical functional groups. NeoDH analogs in which the l-glutamate congener was disrupted by epimerization retained low affinity for GluR5-2a and GluR6a KAR subunits. Most of the analogs showed agonist activity in electrophysiological recordings from human embryonic kidney-T/17 cells expressing GluR5-2a KARs, similar to the natural convulsant neoDH. In contrast, 2,4-epi-neoDH inhibited glutamate currents evoked from both GluR5-2a and GluR6a receptor-expressing cells. Therefore, this compound represents the first compound to exhibit functional antagonist activity on GluR5-2a and GluR6a KAR subunits without concurrent activity on AMPA receptor subunits. Finally, binding affinity of the synthetic ligands for the GluR5-2a subunit closely correlated with their seizurogenic potency, strongly supporting a role for receptors containing this subunit in the convulsant reaction to KAR agonists. The analogs described here offer further insight into structural determinants of ligand selectivity for KARs and potentially represent useful pharmacological tools for studying the role of KARs in synaptic physiology and pathology.

摘要

红藻氨酸受体(KARs)是一类谷氨酸门控离子通道,其拮抗剂在多种神经病理学动物模型中有效,包括癫痫、偏头痛疼痛和焦虑症。为了生成对红藻氨酸受体具有新型选择性的分子,我们合成了三组与天然海洋惊厥剂新海人草碱(neoDH)相关的类似物,并对其药理学特性进行了表征。用重组α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)和KARs进行的放射性配体置换试验表明,neoDH分子上两个位置的官能团是关键的药理学决定因素;只有与谷氨酸受体(GluR)5-2a亚基的结合对关键官能团的结构修饰相对不敏感。l-谷氨酸同系物因差向异构化而被破坏的neoDH类似物对GluR5-2a和GluR6a KAR亚基的亲和力较低。大多数类似物在表达GluR5-2a KARs的人胚肾-T/17细胞的电生理记录中显示出激动剂活性,类似于天然惊厥剂neoDH。相比之下,2,4-表异构-neoDH抑制了从表达GluR5-2a和GluR6a受体的细胞中诱发的谷氨酸电流。因此,该化合物是第一个对GluR5-2a和GluR6a KAR亚基表现出功能性拮抗活性而对AMPA受体亚基无同时活性的化合物。最后,合成配体对GluR5-2a亚基的结合亲和力与其致惊厥效力密切相关,有力地支持了含有该亚基的受体在对KAR激动剂的惊厥反应中的作用。本文所述的类似物为深入了解KARs配体选择性的结构决定因素提供了进一步的见解,并可能代表用于研究KARs在突触生理学和病理学中作用的有用药理学工具。

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