Structure, function, and ion-binding properties of a K<sup>+</sup> channel stabilized in the 2,4-ion-bound configuration.
basic_science · Level V
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- Record sourced from PubMed, PMID 31387976.
- Also identified by DOI 10.1073/pnas.1901888116 and PMC identifier 6708363.
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Abstract
Here, we present the atomic resolution crystallographic structure, the function, and the ion-binding properties of the KcsA mutants, G77A and G77C, that stabilize the 2,4-ion-bound configuration (i.e., water, K<sup>+</sup>, water, K<sup>+</sup>-ion-bound configuration) of the K<sup>+</sup> channel's selectivity filter. A full functional and thermodynamic characterization of the G77A mutant revealed wild-type-like ion selectivity and apparent K<sup>+</sup>-binding affinity, in addition to showing a lack of C-type inactivation gating and a marked reduction in its single-channel conductance. These structures validate, from a structural point of view, the notion that 2 isoenergetic ion-bound configurations coexist within a K<sup>+</sup> channel's selectivity filter, which fully agrees with the water-K<sup>+</sup>-ion-coupled transport detected by streaming potential measurements.
Medical subject headings
- Bacterial Proteins
- Potassium Channels