Charybdotoxin Unbinding from the mKv1.3 Potassium Channel: A Combined Computational and Experimental Study

被引:25
作者
Khabiri, Morteza [1 ,2 ]
Nikouee, Azadeh [3 ]
Cwiklik, Lukasz [4 ,5 ,6 ]
Grissmer, Stephan [3 ]
Ettrich, Ruediger [1 ,2 ]
机构
[1] Acad Sci Czech Republ, Inst Nanobiol & Struct Biol GCRC, CZ-37333 Nove Hrady, Czech Republic
[2] Univ S Bohemia Ceske Budejovice, Fac Sci, CZ-37333 Nove Hrady, Czech Republic
[3] Univ Ulm, Inst Appl Physiol, D-89081 Ulm, Germany
[4] Acad Sci Czech Republ, Vvi, J Heyrovsky Inst Phys Chem, CR-18223 Prague 8, Czech Republic
[5] Acad Sci Czech Republ, Inst Organ Chem & Biochem, CR-16610 Prague 6, Czech Republic
[6] Ctr Complex Mol Syst & Biomol, Prague 16610 6, Czech Republic
关键词
MOLECULAR-DYNAMICS SIMULATIONS; GATED K+ CHANNELS; INDUCED CONFORMATIONAL-CHANGES; BINDING FREE-ENERGY; C-TYPE INACTIVATION; HUMAN LYMPHOCYTE-T; CENTRUROIDES-SCULPTURATUS; SCORPION TOXINS; FORCE-FIELD; CONSTANT-PRESSURE;
D O I
10.1021/jp2061909
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Charybdotoxin, belonging to the group of so-called scorpion toxins, is a short peptide able to block many voltage-gated potassium channels, such as mKv1.3, with high affinity. We use a reliable homology model based on the high-resolution crystal structure of the 94% sequence identical homologue Kv1.2 for charybdotoxin docking followed by molecular dynamics simulations to investigate the mechanism and energetics of unbinding, tracing the behavior of the channel protein and charybdotoxin during umbrella-sampling simulations as charybdotoidn is moved away from the binding site. The potential of mean force is constructed from the umbrella sampling simulations and combined with K-d and free energy values gained experimentally using the patch-clamp technique to study the free energy of binding at different ion concentrations and the mechanism of the charybdotoxin -mKv1.3 binding process. A possible charybdotoxin binding mechanism is deduced that includes an initial hydrophobic contact followed by stepwise electrostatic interactions and finally optimization of hydrogen bonds and salt bridges.
引用
收藏
页码:11490 / 11500
页数:11
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