Measuring anion binding at biomembrane interfaces.

Wu, Xin; Wang, Patrick; Lewis, William; Jiang, Yun-Bao; Gale, Philip A · Nat Commun · 2022

basic_science · Level V

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Abstract

The quantification of anion binding by molecular receptors within lipid bilayers remains challenging. Here we measure anion binding in lipid bilayers by creating a fluorescent macrocycle featuring a strong sulfate affinity. We find the determinants of anion binding in lipid bilayers to be different from those expected that govern anion binding in solution. Charge-dense anions H<sub>2</sub>PO<sub>4</sub><sup>-</sup> and Cl<sup>-</sup> that prevail in dimethyl sulfoxide fail to bind to the macrocycle in lipids. In stark contrast, ClO<sub>4</sub><sup>-</sup> and I<sup>-</sup> that hardly bind in dimethyl sulfoxide show surprisingly significant affinities for the macrocycle in lipids. We reveal a lipid bilayer anion binding principle that depends on anion polarisability and bilayer penetration depth of complexes leading to unexpected advantages of charge-diffuse anions. These insights enhance our understanding of how biological systems select anions and guide the design of functional molecular systems operating at biomembrane interfaces.

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