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Structure of the BgK-Kv1.1 Complex Based on Distance Restraints Identified by Double Mutant Cycles

Authors :
Anja Wrisch
Bernard Gilquin
Judith Racapé
André Ménez
Stephan Grissmer
Sylvaine Gasparini
Alain Lecoq
Violeta Visan
Source :
Journal of Biological Chemistry. 277:37406-37413
Publication Year :
2002
Publisher :
Elsevier BV, 2002.

Abstract

A structural model of BgK, a sea anemone toxin, complexed with the S5-S6 region of Kv1.1, a voltage-gated potassium channel, was determined by flexible docking under distance restraints identified by a double mutant cycles approach. This structure provides the molecular basis for identifying the major determinants of the BgK-Kv1.1 channel interactions involving the BgK dyad residues Lys(25) and Tyr(26). These interactions are (i) electrostatic interactions between the extremity of Lys(25) side chain and carbonyl oxygen atoms of residues from the channel selectivity filter that may be strengthened by solvent exclusion provided by (ii) hydrophobic interactions involving BgK residues Tyr(26) and Phe(6) and Kv1.1 residue Tyr(379) whose side chain protrudes in the channel vestibule. In other Kv1 channel-BgK complexes, these interactions are likely to be conserved, implicating both conserved and variable residues from the channels. The data suggest that the conservation in sea anemone and scorpion potassium channel blockers of a functional dyad composed of a lysine, and a hydrophobic residue reflects their use of convergent binding solutions based on a crucial interplay between these important conserved interactions.

Details

ISSN :
00219258
Volume :
277
Database :
OpenAIRE
Journal :
Journal of Biological Chemistry
Accession number :
edsair.doi...........63b08277bb6a3dc242c3098f32beccd2
Full Text :
https://doi.org/10.1074/jbc.m206205200