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Conotoxin αD-GeXXA utilizes a novel strategy to antagonize nicotinic acetylcholine receptors

机译:芋螺毒素αD-GeXXA利用新策略拮抗烟碱乙酰胆碱受体

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摘要

Nicotinic acetylcholine receptors (nAChRs) play essential roles in transmitting acetylcholine-mediated neural signals across synapses and neuromuscular junctions, and are also closely linked to various diseases and clinical conditions. Therefore, novel nAChR-specific compounds have great potential for both neuroscience research and clinical applications. Conotoxins, the peptide neurotoxins produced by cone snails, are a rich reservoir of novel ligands that target receptors, ion channels and transporters in the nervous system. From the venom of Conus generalis, we identified a novel dimeric nAChR-inhibiting αD-conotoxin GeXXA. By solving the crystal structure and performing structure-guided dissection of this toxin, we demonstrated that the monomeric C-terminal domain of αD-GeXXA, GeXXA-CTD, retains inhibitory activity against the α9α10 nAChR subtype. Furthermore, we identified that His7 of the rat α10 nAChR subunit determines the species preference of αD-GeXXA, and is probably part of the binding site of this toxin. These results together suggest that αD-GeXXA cooperatively binds to two inter-subunit interfaces on the top surface of nAChR, thus allosterically disturbing the opening of the receptor. The novel antagonistic mechanism of αD-GeXXA via a new binding site on nAChRs provides a valuable basis for the rational design of new nAChR-targeting compounds.
机译:烟碱型乙酰胆碱受体(nAChR)在跨突触和神经肌肉接头传输乙酰胆碱介导的神经信号中起着至关重要的作用,并且还与各种疾病和临床状况密切相关。因此,新型的nAChR特异性化合物对于神经科学研究和临床应用都具有巨大的潜力。锥蜗牛产生的肽神经毒素-芋螺毒素(Conotoxins),是针对神经系统中的受体,离子通道和转运蛋白的新型配体的丰富储存体。从普通圆锥体的毒液中,我们确定了一种新型的二聚体抑制nAChR的αD-芋螺毒素GeXXA。通过解决这种毒素的晶体结构并进行结构指导的解剖,我们证明了αD-GeXXA的单体C末端结构域GeXXA-CTD保留了对α9α10nAChR亚型的抑制活性。此外,我们发现大鼠α10nAChR亚基的His7决定了αD-GeXXA的物种偏好,可能是该毒素结合位点的一部分。这些结果共同表明,αD-GeXXA与nAChR顶表面上的两个亚基间界面协同结合,从而变构地干扰了受体的开放。通过nAChRs上新的结合位点,αD-GeXXA的新型拮抗机制为合理设计靶向nAChR的新化合物提供了有价值的基础。

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