The Ca<sup>2+</sup> permeation mechanism of the ryanodine receptor revealed by a multi-site ion model.

Zhang, Aihua; Yu, Hua; Liu, Chunhong; Song, Chen · Nat Commun · 2020

basic_science · Level V

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Abstract

Ryanodine receptors (RyR) are ion channels responsible for the release of Ca<sup>2+</sup> from the sarco/endoplasmic reticulum and play a crucial role in the precise control of Ca<sup>2+</sup> concentration in the cytosol. The detailed permeation mechanism of Ca<sup>2+</sup> through RyR is still elusive. By using molecular dynamics simulations with a specially designed Ca<sup>2+</sup> model, we show that multiple Ca<sup>2+</sup> ions accumulate in the upper selectivity filter of RyR1, but only one Ca<sup>2+</sup> can occupy and translocate in the narrow pore at a time, assisted by electrostatic repulsion from the Ca<sup>2+</sup> within the upper selectivity filter. The Ca<sup>2+</sup> is nearly fully hydrated with the first solvation shell intact during the whole permeation process. These results suggest a remote knock-on permeation mechanism and one-at-a-time occupation pattern for the hydrated Ca<sup>2+</sup> within the narrow pore, uncovering the basis underlying the high permeability and low selectivity of the RyR channels.

Medical subject headings