The scorpion toxin BeKm‐1 blocks hERG cardiac potassium channels using an indispensable arginine residue

Author:

Zavarzina Iana I.1ORCID,Kuzmenkov Alexey I.2ORCID,Dobrokhotov Nikita A.1,Maleeva Ekaterina E.2,Korolkova Yuliya V.2,Peigneur Steve3,Tytgat Jan3,Krylov Nikolay A.2ORCID,Vassilevski Alexander A.12ORCID,Chugunov Anton O.12ORCID

Affiliation:

1. Moscow Institute of Physics and Technology (State University) Dolgoprudny Russia

2. Shemyakin‐Ovchinnikov Institute of Bioorganic Chemistry Moscow Russia

3. Toxicology and Pharmacology KU Leuven Belgium

Abstract

BeKm‐1 is a peptide toxin from scorpion venom that blocks the pore of the potassium channel hERG (Kv11.1) in the human heart. Although individual protein structures have been resolved, the structure of the complex between hERG and BeKm‐1 is unknown. Here, we used molecular dynamics and ensemble docking, guided by previous double‐mutant cycle analysis data, to obtain an in silico model of the hERG–BeKm‐1 complex. Adding to the previous mutagenesis study of BeKm‐1, our model uncovers the key role of residue Arg20, which forms three interactions (a salt bridge and hydrogen bonds) with the channel vestibule simultaneously. Replacement of this residue even by lysine weakens the interactions significantly. In accordance, the recombinantly produced BeKm‐1R20K mutant exhibited dramatically decreased activity on hERG. Our model may be useful for future drug design attempts.

Funder

Russian Science Foundation

Publisher

Wiley

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