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Distinct modifications in Kv2.1 channel via chemokine receptor CXCR4 regulate neuronal survival-death dynamics.通过趋化因子受体 CXCR4 对 Kv2.1 通道的独特修饰调节神经元存活-死亡动力学。
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Roles of chemokine CXCL12 and its receptors in ischemic stroke.趋化因子 CXCL12 及其受体在缺血性脑卒中中的作用。
Curr Drug Targets. 2012 Feb;13(2):166-72. doi: 10.2174/138945012799201603.
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Compartmentalization of the GABAB receptor signaling complex is required for presynaptic inhibition at hippocampal synapses.GABAB 受体信号复合物的分隔对于海马突触的突触前抑制是必需的。
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Intrathecal baclofen in cerebral palsy: A decade of treatment outcomes.鞘内注射巴氯芬治疗脑瘫:十年治疗成果
J Pediatr Rehabil Med. 2008;1(1):3-32.
5
Biology and clinical relevance of chemokines and chemokine receptors CXCR4 and CCR5 in human diseases.趋化因子及其受体 CXCR4 和 CCR5 在人类疾病中的生物学和临床意义。
Exp Biol Med (Maywood). 2011 Jun 1;236(6):637-47. doi: 10.1258/ebm.2011.010389. Epub 2011 May 12.
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Treatment of spasticity related to multiple sclerosis with intrathecal baclofen: a long-term follow-up.鞘内注射巴氯芬治疗多发性硬化相关痉挛:长期随访。
J Rehabil Med. 2011 May;43(6):511-4. doi: 10.2340/16501977-0811.
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Label-free quantification of membrane-ligand interactions using backscattering interferometry.使用背向散射干涉测量法对膜配体相互作用进行无标记定量。
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Mini-review series: focus on chemokines.迷你综述系列:聚焦趋化因子
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9
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J Pharmacol Toxicol Methods. 2011 Nov-Dec;64(3):213-6. doi: 10.1016/j.vascn.2011.01.004. Epub 2011 Feb 1.
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Chemistry and pharmacology of GABAB receptor ligands.GABAB受体配体的化学与药理学
Adv Pharmacol. 2010;58:19-62. doi: 10.1016/S1054-3589(10)58002-5.

巴氯芬和其他 GABAB 受体激动剂是趋化因子受体 CXCR4 的别构调节剂。

Baclofen and other GABAB receptor agents are allosteric modulators of the CXCL12 chemokine receptor CXCR4.

机构信息

Université de Nice Sophia Antipolis, Nice, France.

出版信息

J Neurosci. 2013 Jul 10;33(28):11643-54. doi: 10.1523/JNEUROSCI.6070-11.2013.

DOI:10.1523/JNEUROSCI.6070-11.2013
PMID:23843532
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4299549/
Abstract

CXCR4, a receptor for the chemokine CXCL12 (stromal-cell derived factor-1α), is a G-protein-coupled receptor (GPCR), expressed in the immune and CNS and integrally involved in various neurological disorders. The GABAB receptor is also a GPCR that mediates metabotropic action of the inhibitory neurotransmitter GABA and is located on neurons and immune cells as well. Using diverse approaches, we report novel interaction between GABAB receptor agents and CXCR4 and demonstrate allosteric binding of these agents to CXCR4. First, both GABAB antagonists and agonists block CXCL12-elicited chemotaxis in human breast cancer cells. Second, a GABAB antagonist blocks the potentiation by CXCL12 of high-threshold Ca(2+) channels in rat neurons. Third, electrophysiology in Xenopus oocytes and human embryonic kidney cell line 293 cells in which we coexpressed rat CXCR4 and the G-protein inward rectifier K(+) (GIRK) channel showed that GABAB antagonist and agonist modified CXCL12-evoked activation of GIRK channels. To investigate whether GABAB ligands bind to CXCR4, we expressed this receptor in heterologous systems lacking GABAB receptors and performed competition binding experiments. Our fluorescent resonance energy transfer experiments suggest that GABAB ligands do not bind CXCR4 at the CXCL12 binding pocket suggesting allosteric modulation, in accordance with our electrophysiology experiments. Finally, using backscattering interferometry and lipoparticles containing only the CXCR4 receptor, we quantified the binding affinity for the GABAB ligands, confirming a direct interaction with the CXCR4 receptor. The effect of GABAergic agents on CXCR4 suggests new therapeutic potentials for neurological and immune diseases.

摘要

趋化因子受体 4(CXCR4)是趋化因子 CXCL12(基质细胞衍生因子 1α)的受体,是一种 G 蛋白偶联受体(GPCR),在免疫和中枢神经系统中表达,并整合参与各种神经疾病。GABAB 受体也是一种 GPCR,介导抑制性神经递质 GABA 的代谢型作用,位于神经元和免疫细胞上。使用多种方法,我们报告了 GABAB 受体配体与 CXCR4 之间的新相互作用,并证明了这些配体对 CXCR4 的变构结合。首先,GABAB 拮抗剂和激动剂都阻断了人乳腺癌细胞中 CXCL12 诱导的趋化作用。其次,GABAB 拮抗剂阻断了 CXCL12 对大鼠神经元高阈值 Ca(2+)通道的增强作用。第三,在我们共表达大鼠 CXCR4 和 G 蛋白内向整流钾 (GIRK) 通道的非洲爪蟾卵母细胞和人胚肾 293 细胞系的电生理学中,GABAB 拮抗剂和激动剂改变了 CXCL12 诱导的 GIRK 通道激活。为了研究 GABAB 配体是否与 CXCR4 结合,我们在缺乏 GABAB 受体的异源系统中表达了该受体,并进行了竞争结合实验。我们的荧光共振能量转移实验表明,GABAB 配体不会与 CXCR4 在 CXCL12 结合口袋结合,这表明是变构调节,与我们的电生理学实验一致。最后,使用背向散射干涉测量法和仅包含 CXCR4 受体的脂质体,我们定量了 GABAB 配体的结合亲和力,证实了与 CXCR4 受体的直接相互作用。GABAB 能药物对 CXCR4 的影响表明了其在神经和免疫疾病中的新治疗潜力。