An Anion-Selective Analogue of the Channel-Forming Peptide Alamethicin

The peptide alamethicin self-assembles to form helix bundle ion channels in membranes. Previous macroscopic measurements have shown that these channels are mildly cation-selective. Models indicate that a source of cation selectivity is a zone of partial negative charge toward the C-terminal end of t...

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Veröffentlicht in:Biochemistry (Easton) 1999-05, Vol.38 (19), p.6144-6150
Hauptverfasser: Starostin, Andrei V, Butan, Radu, Borisenko, Vitali, James, D. Andrew, Wenschuh, Holger, Sansom, Mark S. P, Woolley, G. Andrew
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Sprache:eng
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Zusammenfassung:The peptide alamethicin self-assembles to form helix bundle ion channels in membranes. Previous macroscopic measurements have shown that these channels are mildly cation-selective. Models indicate that a source of cation selectivity is a zone of partial negative charge toward the C-terminal end of the peptide. We synthesized an alamethicin derivative with a lysine in this zone (replacing the glutamine at position 18 in the sequence). Microscopic (single-channel) measurements demonstrate that dimeric alamethicin-lysine18 (alm-K18) forms mildly anion-selective channels under conditions where channels formed by the parent peptide are cation-selective. Long-range electrostatic interactions can explain the inversion of ion selectivity and the conductance properties of alamethicin channels.
ISSN:0006-2960
1520-4995
DOI:10.1021/bi9826355