Crystal structure of the ternary complex of a NaV C-terminal domain, a fibroblast growth factor homologous factor, and calmodulin.

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Wang C, Chung BC, Yan H, Lee SY, Pitt GS

Crystal structure of the ternary complex of a NaV C-terminal domain, a fibroblast growth factor homologous factor, and calmodulin.

Structure. 2012 Jul 3;20(7):1167-76. doi: 10.1016/j.str.2012.05.001. Epub 2012 Jun 14.

PubMed ID
22705208 [ View in PubMed
]
Abstract

Voltage-gated Na(+) (Na(V)) channels initiate neuronal action potentials. Na(V) channels are composed of a transmembrane domain responsible for voltage-dependent Na(+) conduction and a cytosolic C-terminal domain (CTD) that regulates channel function through interactions with many auxiliary proteins, including fibroblast growth factor homologous factors (FHFs) and calmodulin (CaM). Most ion channel structural studies have focused on mechanisms of permeation and voltage-dependent gating but less is known about how intracellular domains modulate channel function. Here we report the crystal structure of the ternary complex of a human Na(V) CTD, an FHF, and Ca(2)(+)-free CaM at 2.2 A. Combined with functional experiments based on structural insights, we present a platform for understanding the roles of these auxiliary proteins in Na(V) channel regulation and the molecular basis of mutations that lead to neuronal and cardiac diseases. Furthermore, we identify a critical interaction that contributes to the specificity of individual Na(V) CTD isoforms for distinctive FHFs.

DrugBank Data that Cites this Article

Polypeptides
NameUniProt ID
Sodium channel protein type 5 subunit alphaQ14524Details