Blockade of human α7 nicotinic acetylcholine receptor by α-conotoxin IMI dendrimer: Insight from computational simulations

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Abstract

Nicotinic acetylcholine receptors (nAChRs) are ligand-gated ion channels that are involved in fast synaptic transmission and mediated physiological activities in the nervous system. α-Conotoxin ImI exhibits subtype-specific blockade towards homomeric α7 and α9 receptors. In this study, we established a method to build a 2×ImI-dendrimer/h (human) α7 nAChR model, and based on this model, we systematically investigated the molecular interactions between the 2×ImI-dendrimer and hα7 nAChR. Our results suggest that the 2×ImI-dendrimer possessed much stronger potency towards hα7 nAChR than the α-ImI monomer and demonstrated that the linker between α-ImI contributed to the potency of the 2×ImI-dendrimer by forming a stable hydrogen-bond network with hα7 nAChR. Overall, this study provides novel insights into the binding mechanism of α-ImI dendrimer to hα7 nAChR, and the methodology reported here opens an avenue for the design of more selective dendrimers with potential usage as drug/gene carriers, macromolecular drugs, and molecular probes.

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Xu, X., Liang, J., Zhang, Z., Jiang, T., & Yu, R. (2019). Blockade of human α7 nicotinic acetylcholine receptor by α-conotoxin IMI dendrimer: Insight from computational simulations. Marine Drugs, 17(5). https://doi.org/10.3390/md17050303

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