A Novel ABCC8 (SUR1)-dependent Mechanism of Metabolism-Excitation Uncoupling
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry
Reference26 articles.
1. ATP-Sensitive Potassium Channels — Neonatal Diabetes Mellitus and Beyond
2. A VIEW OF SUR/KIR6.X, KATP CHANNELS
3. ATP-SENSITIVE POTASSIUM CHANNELS: A Model of Heteromultimeric Potassium Channel/Receptor Assemblies
4. The Human ATP-Binding Cassette (ABC) Transporter Superfamily
5. A Conserved Inhibitory and Differential Stimulatory Action of Nucleotides on KIR6.0/SUR Complexes Is Essential for Excitation-Metabolism Coupling by KATP Channels
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1. New insights into KATP channel gene mutations and neonatal diabetes mellitus;Nature Reviews Endocrinology;2020-05-06
2. ATP binding without hydrolysis switches sulfonylurea receptor 1 (SUR1) to outward-facing conformations that activate KATP channels;Journal of Biological Chemistry;2019-03
3. Activation mechanism of ATP-sensitive K+ channels explored with real-time nucleotide binding;eLife;2019-02-21
4. Activation mechanism of ATP-sensitive K+ channels explored with real-time nucleotide binding;2018-08-28
5. The Nucleotide-Binding Sites of SUR1: A Mechanistic Model;Biophysical Journal;2015-12
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