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α-芋螺毒素在人α3β4 烟碱型乙酰胆碱受体上的作用的结构机制。

Structural mechanisms for α-conotoxin activity at the human α3β4 nicotinic acetylcholine receptor.

机构信息

IMB Centre for Pain Research, Institute for Molecular Bioscience, The University of Queensland, St. Lucia, Queensland 4072, Australia.

出版信息

Sci Rep. 2017 Mar 31;7:45466. doi: 10.1038/srep45466.

Abstract

Nicotinic acetylcholine receptors (nAChR) are therapeutic targets for a range of human diseases. α-Conotoxins are naturally occurring peptide antagonists of nAChRs that have been used as pharmacological probes and investigated as drug leads for nAChR related disorders. However, α-conotoxin interactions have been mostly characterised at the α7 and α3β2 nAChRs, with interactions at other subtypes poorly understood. This study provides novel structural insights into the molecular basis for α-conotoxin activity at α3β4 nAChR, a therapeutic target where subtype specific antagonists have potential to treat nicotine addiction and lung cancer. A co-crystal structure of α-conotoxin LsIA with Lymnaea stagnalis acetylcholine binding protein guided the design and functional characterisations of LsIA analogues that identified the minimum pharmacophore regulating α3β4 antagonism. Interactions of the LsIA R10F with β4 K57 and the conserved -NN- α-conotoxin motif with β4 I77 and I109 conferred α3β4 activity to the otherwise inactive LsIA. Using these structural insights, we designed LsIA analogues with α3β4 activity. This new understanding of the structural basis of protein-protein interactions between α-conotoxins and α3β4 may help rationally guide the development of α3β4 selective antagonists with therapeutic potential.

摘要

烟碱型乙酰胆碱受体 (nAChR) 是一系列人类疾病的治疗靶点。α-芋螺毒素是 nAChR 的天然存在的肽类拮抗剂,已被用作药理学探针,并被研究为与 nAChR 相关疾病的药物先导物。然而,α-芋螺毒素的相互作用大多在 α7 和 α3β2 nAChR 上得到了表征,而其他亚型的相互作用则知之甚少。本研究为 α-芋螺毒素在 α3β4 nAChR 上的活性提供了新的结构见解,α3β4 nAChR 是一个治疗靶点,其中特定于亚型的拮抗剂有可能治疗尼古丁成瘾和肺癌。α-芋螺毒素 LsIA 与沼螺乙酰胆碱结合蛋白的共晶结构指导了 LsIA 类似物的设计和功能表征,确定了调节 α3β4 拮抗作用的最小药效团。LsIA 的 R10F 与 β4 K57 的相互作用以及保守的 -NN- α-芋螺毒素基序与 β4 I77 和 I109 的相互作用赋予了 LsIA 对原本无活性的 LsIA 的 α3β4 活性。利用这些结构见解,我们设计了具有 α3β4 活性的 LsIA 类似物。对 α-芋螺毒素与 α3β4 之间蛋白质-蛋白质相互作用的结构基础的新认识可能有助于合理指导具有治疗潜力的 α3β4 选择性拮抗剂的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6062/5374441/8c565c5ffeb0/srep45466-f1.jpg

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