Cation-π Interactions and their Functional Roles in Membrane Proteins: Cation-π interactions in membrane proteins

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Abstract

Cation-π interactions arise as a result of strong attractive forces between positively charged entities and the π-electron cloud of aromatic groups. The physicochemical characteristics of cation-π interactions are particularly well-suited to the dual hydrophobic/hydrophilic environment of membrane proteins. As high-resolution structural data of membrane proteins bring molecular features into increasingly sharper view, cation-π interactions are gaining traction as essential contributors to membrane protein chemistry, function, and pharmacology. Here we review the physicochemical properties of cation-π interactions and present several prominent examples which demonstrate significant roles for this specialized biological chemistry.

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Infield, D. T., Rasouli, A., Galles, G. D., Chipot, C., Tajkhorshid, E., & Ahern, C. A. (2021, August 20). Cation-π Interactions and their Functional Roles in Membrane Proteins: Cation-π interactions in membrane proteins. Journal of Molecular Biology. Academic Press. https://doi.org/10.1016/j.jmb.2021.167035

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