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Dual mechanisms contribute to enhanced voltage dependence of an electric fish potassium channel

Biophys J. 2024-03; 
Jelena Todorovic, Immani Swapna, Antonio Suma, Vincenzo Carnevale, Harold Zakon
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摘要

The voltage dependence of different voltage-gated potassium channels, described by the voltage at which half of the channels are open (V), varies over a range of 80 mV and is influenced by factors such as the number of positive gating charges and the identity of the hydrophobic amino acids in the channel's voltage sensor (S4). Here we explore by experimental manipulations and molecular dynamics simulation the contributions of two derived features of an electric fish potassium channel (Kv1.7a) that is among the most voltage-sensitive Shaker family potassium channels known. These are a patch of four contiguous negatively charged glutamates in the S3-S4 extracellular loop and a glutamate in the S3b helix. We find... More

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