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December 1, 1996Biophysical Journal263 citationsOpen Access

On the structural basis for ionic selectivity among Na+, K+, and Ca2+ in the voltage-gated sodium channel

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IFIsabelle FavreEMEdward MoczydlowskiLSLaurent Schild

Key Result

Mutational analysis of the mu 1 rat muscle sodium channel revealed that the Lys residue in Domain III is the critical determinant specifying Ca2+ impermeability and selective Na+ over K+ permeability.

Structured PICO

P
Population
Various mutants of the mu 1 rat muscle sodium channel
I
Intervention
Mutagenesis of the DEKA locus, specifically the Lys residue in Domain III
C
Comparator
Wild-type mu 1 rat muscle sodium channel
O
Outcome
Selective permeability of Na+, K+, and Ca2+surrogate

The Lys residue in Domain III of the sodium channel acts as an endogenous cation within the selectivity filter to determine ionic selectivity.

Abstract

Voltage-sensitive sodium channels and calcium channels are homologous proteins with distinctly different selectivity for permeation of inorganic cations. This difference in function is specified by amino acid residues located within P-region segments that link presumed transmembrane elements S5 and S6 in each of four repetitive Domains I, II, III, and IV. By analyzing the selective permeability of Na+, K+, and Ca2+ in various mutants of the mu 1 rat muscle sodium channel, the results in this paper support the concept that a conserved motif of four residues contributed by each of the Domains I-IV, termed the DEKA locus in sodium channels and the EEEE locus in calcium channels, determines the ionic selectivity of these channels. Furthermore, the results indicate that the Lys residue in Domain III of the sodium channel is the critical determinant that specifies both the impermeability of Ca2+ and the selective permeability of Na+ over K+. We propose that the alkylammonium ion of the Lys(III) residue acts as an endogenous cation within the ion binding site/selectivity filter of the sodium channel to tune the kinetics and affinity of inorganic cation binding within the pore in a manner analogous to ion-ion interactions that occur in the process of multi-ion channel conduction.

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Cite This Study

Favre et al. (1996) studied this question. Mutations in the mu 1 rat muscle sodium channel was evaluated on Selective permeability of Na+, K+, and Ca2+. Mutational analysis of the mu 1 rat muscle sodium channel revealed that the Lys residue in Domain III is the critical determinant specifying Ca2+ impermeability and selective Na+ over K+ permeability.

synapsesocial.com/papers/6aa28b7cadc9f8b8e5a89d0bhttps://doi.org/10.1016/s0006-3495(96)79505-x
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