Molecular principles of assembly, activation, and inhibition in epithelial sodium channel.

Noreng, Sigrid; Posert, Richard; Bharadwaj, Arpita; Houser, Alexandra; Baconguis, Isabelle · Elife · 2020

basic_science · Level V

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Abstract

The molecular bases of heteromeric assembly and link between Na<sup>+</sup> self-inhibition and protease-sensitivity in epithelial sodium channels (ENaCs) are not fully understood. Previously, we demonstrated that ENaC subunits - α, β, and γ - assemble in a counterclockwise configuration when viewed from outside the cell with the protease-sensitive GRIP domains in the periphery (Noreng et al., 2018). Here we describe the structure of ENaC resolved by cryo-electron microscopy at 3 Å. We find that a combination of precise domain arrangement and complementary hydrogen bonding network defines the subunit arrangement. Furthermore, we determined that the α subunit has a primary functional module consisting of the finger and GRIP domains. The module is bifurcated by the α2 helix dividing two distinct regulatory sites: Na<sup>+</sup> and the inhibitory peptide. Removal of the inhibitory peptide perturbs the Na<sup>+</sup> site via the α2 helix highlighting the critical role of the α2 helix in regulating ENaC function.

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