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Activation mechanism of ATP-sensitive K+ channels explored with real-time nucleotide binding

Authors :
Michael C. Puljung
Natascia Vedovato
Frances M. Ashcroft
Samuel Usher
Source :
eLife, Vol 8 (2019)
Publication Year :
2019

Abstract

The response of ATP-sensitive K+channels (KATP) to cellular metabolism is coordinated by three classes of nucleotide binding site (NBS). We used a novel approach involving labeling of intact channels in a native, membrane environment with a non-canonical fluorescent amino acid and measurement (using FRET with fluorescent nucleotides) of steady-state and time-resolved nucleotide binding to dissect the role of NBS2 of the accessory SUR1 subunit of KATPin channel gating. Binding to NBS2 was Mg2+-independent, but Mg was required to trigger a conformational change in SUR1. Mutation of a lysine (K1384A) in NBS2 that coordinates bound nucleotides increased the EC50for trinitrophenyl-ADP binding to NBS2, but only in the presence of Mg2+, indicating that this mutation disrupts the ligand-induced conformational change. Comparison of nucleotide-binding with ionic currents suggests a model in which each nucleotide binding event to NBS2 of SUR1 is independent and promotes KATPactivation by the same amount.

Details

Language :
English
ISSN :
2050084X
Volume :
8
Database :
OpenAIRE
Journal :
eLife
Accession number :
edsair.doi.dedup.....733dadca5fb4e26009978b305ca60bb3