A model of scorpion toxin binding to voltage-gated K+ channels

被引:27
|
作者
Lipkind, GM
Fozzard, HA
机构
[1] UNIV CHICAGO,DEPT MED,CHICAGO,IL 60637
[2] UNIV CHICAGO,DEPT BIOCHEM & MOL BIOL,CHICAGO,IL 60637
[3] UNIV CHICAGO,DEPT PHARMACOL & PHYSIOL SCI,CHICAGO,IL 60637
来源
JOURNAL OF MEMBRANE BIOLOGY | 1997年 / 158卷 / 03期
关键词
potassium channel; scorpion toxins; molecular models; mutant cycle analysis; point mutations;
D O I
10.1007/s002329900256
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mutational studies have identified part of the S5-S6 loop of voltage-dependent K+ channels (P region) responsible for tetraethylammonium (TEA) block and permeation properties. Several scorpion peptide toxins - charybdotoxin (ChTX), kaliotoxin (KITX), and agitoxin (AgTX) - also block the channel with high affinity and specificity. Here, we examine the interaction predicted when the toxins are docked onto the molecular model of the K+ channel pore that we recently proposed. Docking with the model of the Kv1.3 channel started by location of Lys-27 side chain into the central axis of the pore, followed by energy minimization. In the optimal arrangement, Arg-24 of KITX or AgTX forms a hydrogen bond with the Asp-386 carboxyl of one subunit, and Asn-30 is in immediate contact with Asp-386 of the opposing subunit in the tetramer. Toxin residues in proximity to the side chain of Lys-27 (Phe-25, Thr-36, Met-29, and Ser-11 in KITX) interact with the four C-end His-404s. For ChTX the interaction with Asp-386 is reduced, but this is compensated by additional nonbonded interactions formed by Tyr-36 and Arg-34. Comparison of calculated energy of interaction of these specific toxin-channel residues with experimental studies reveals good agreement. The similar total calculated energy of interaction is consistent with the similar IC50 for Kv1.3 block by KITX and AgTX. Steric contacts of residues in position 380 of the S5-P linker with residues on the upper part of toxins permit reconstruction of the K+ channel outer vestibule walls, which are about 30 Angstrom apart and about 9 Angstrom high. Molecular modeling shows complementarity of the pore model to toxin spacial structures, and supports the proposal that the N-terminal borders of the P regions surround residues of their C-terminal halves.
引用
收藏
页码:187 / 196
页数:10
相关论文
共 50 条
  • [1] A Model of Scorpion Toxin Binding to Voltage-gated K+ Channels
    G.M. Lipkind
    H.A. Fozzard
    [J]. The Journal of Membrane Biology , 1997, 158 : 187 - 196
  • [2] Molecular modeling of scorpion toxin binding to voltage-gated K+ channels
    Lipkind, GM
    Fozzard, HA
    [J]. PERSPECTIVES IN DRUG DISCOVERY AND DESIGN, 1999, 16 : 245 - 255
  • [3] Structural model of beta-scorpion toxin binding to voltage-gated sodium channels
    Yarov-Yarovoy, VM
    Cestèle, S
    Scheuer, T
    Baker, D
    Catterall, WA
    [J]. BIOPHYSICAL JOURNAL, 2005, 88 (01) : 97A - 97A
  • [4] Toxin determinants required for interaction with voltage-gated K+ channels
    Jouirou, B
    Mouhat, S
    Andreotti, N
    De Waard, M
    Sabatier, JM
    [J]. TOXICON, 2004, 43 (08) : 909 - 914
  • [5] Voltage-Gated K+/Na+Channels and Scorpion Venom Toxins in Cancer
    Diaz-Garcia, Alexis
    Varela, Diego
    [J]. FRONTIERS IN PHARMACOLOGY, 2020, 11
  • [6] Pandinus imperator scorpion venom blocks voltage-gated K+ channels in human lymphocytes
    Peter, M
    Varga, Z
    Panyi, G
    Bene, L
    Damjanovich, S
    Pieri, C
    Possani, LD
    Gaspar, R
    [J]. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1998, 242 (03) : 621 - 625
  • [7] Selective inhibition of native, rapidly inactivating voltage-gated K+ channels by scorpion toxins
    Sapko, M
    Matteson, DR
    [J]. BIOPHYSICAL JOURNAL, 1999, 76 (01) : A332 - A332
  • [8] NADPH binding to β-subunit regulates inactivation of voltage-gated K+ channels
    Tipparaju, Srinivas M.
    Liu, Si-Qi
    Barski, Oleg A.
    Bhatnagar, Aruni
    [J]. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2007, 359 (02) : 269 - 276
  • [9] A brief introduction to voltage-gated K+ channels
    Roux, Benoit
    [J]. COMPUTATIONAL MODELING OF MEMBRANE BILAYERS, 2008, 60 : 369 - 384
  • [10] Sterol Regulation of Voltage-Gated K+ Channels
    Balajthy, Andras
    Hajdu, Peter
    Panyi, Gyorgy
    Varga, Zoltan
    [J]. STEROL REGULATION OF ION CHANNELS, 2017, 80 : 255 - 292