Modeling the binding of three toxins to the voltage-gated potassium channel (Kv1.3).
Ontology highlight
ABSTRACT: The conduction properties of the voltage-gated potassium channel Kv1.3 and its modes of interaction with several polypeptide venoms are examined using Brownian dynamics simulations and molecular dynamics calculations. Employing an open-state homology model of Kv1.3, we first determine current-voltage and current-concentration curves and ascertain that simulated results accord with experimental measurements. We then investigate, using a molecular docking method and molecular dynamics simulations, the complexes formed between the Kv1.3 channel and several Kv-specific polypeptide toxins that are known to interfere with the conducting mechanisms of several classes of voltage-gated K(+) channels. The depths of potential of mean force encountered by charybdotoxin, α-KTx3.7 (also known as OSK1) a
SUBMITTER: Chen R
PROVIDER: S-EPMC3297799 | biostudies-literature | 2011 Dec
REPOSITORIES: biostudies-literature
ACCESS DATA