Skip to main content
bioRxiv
  • Home
  • About
  • Submit
  • ALERTS / RSS
Advanced Search
New Results

A generic binding pocket for small molecule IKs activators at the extracellular inter-subunit interface of KCNQ1 and KCNE1 channel complexes

Magnus Chan, Harutyun Sahakyan, Jodene Eldstrom, Daniel Sastre, Yundi Wang, Ying Dou, Marc Pourrier, Vitya Vardanyan, View ORCID ProfileDavid Fedida
doi: https://doi.org/10.1101/2023.02.27.530167
Magnus Chan
1Department of Anesthesiology, Pharmacology and Therapeutics, University of British Columbia, Vancouver, British Columbia, Canada, V6T1Z3
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Harutyun Sahakyan
3Laboratory of Computational Modeling of Biological Processes, Institute of Molecular Biology of NAS RA, 0014, Yerevan, Armenia
4Present Address: National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda MD, USA
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Jodene Eldstrom
1Department of Anesthesiology, Pharmacology and Therapeutics, University of British Columbia, Vancouver, British Columbia, Canada, V6T1Z3
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Daniel Sastre
1Department of Anesthesiology, Pharmacology and Therapeutics, University of British Columbia, Vancouver, British Columbia, Canada, V6T1Z3
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Yundi Wang
1Department of Anesthesiology, Pharmacology and Therapeutics, University of British Columbia, Vancouver, British Columbia, Canada, V6T1Z3
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Ying Dou
1Department of Anesthesiology, Pharmacology and Therapeutics, University of British Columbia, Vancouver, British Columbia, Canada, V6T1Z3
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Marc Pourrier
1Department of Anesthesiology, Pharmacology and Therapeutics, University of British Columbia, Vancouver, British Columbia, Canada, V6T1Z3
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Vitya Vardanyan
2Molecular Neuroscience Group, Institute of Molecular Biology, NAS RA, 7 Hasratyan St. 0014 Yerevan, Armenia
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • For correspondence: [email protected] [email protected]
David Fedida
1Department of Anesthesiology, Pharmacology and Therapeutics, University of British Columbia, Vancouver, British Columbia, Canada, V6T1Z3
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • ORCID record for David Fedida
  • For correspondence: [email protected] [email protected]
  • Abstract
  • Full Text
  • Info/History
  • Metrics
  • Supplementary material
  • Preview PDF
Loading

Abstract

The cardiac IKs ion channel comprises KCNQ1, calmodulin, and KCNE1 in a dodecameric complex which provides a repolarizing current reserve at higher heart rates and protects from arrhythmia syndromes that cause fainting and sudden death. Pharmacological activators of IKs are therefore of interest both scientifically and therapeutically for treatment of IKs loss-of-function disorders. One group of chemical activators are only active in the presence of the accessory KCNE1 subunit and here we investigate this phenomenon using molecular modeling techniques and mutagenesis scanning in mammalian cells. A generalized activator binding pocket is formed extracellularly by KCNE1, the domain-swapped S1 helices of one KCNQ1 subunit and the pore/turret region made up of two other KCNQ1 subunits. A few residues, including K41, A44 and Y46 in KCNE1, W323 in the KCNQ1 pore, and Y148 in the KCNQ1 S1 domain, appear critical for the binding of structurally diverse molecules, but in addition, molecular modeling studies suggest that induced fit by structurally different molecules underlies the generalized nature of the binding pocket. Activation of IKs is enhanced by stabilization of the KCNQ1-S1/KCNE1/pore complex, which ultimately slows deactivation of the current, and promotes outward current summation at higher pulse rates. Our results provide a mechanistic explanation of enhanced IKscurrents by these activator compounds and provide a map for future design of more potent therapeutically useful molecules.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • Changes made to electrophysiology presentation and molecular dynamics simulations in response to reviewer comments from eLife. Figures 2, 4, 6 modified, additional supplemental figures included to figures 2, 3, 4, 6, and 7

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
Back to top
PreviousNext
Posted June 15, 2023.
Download PDF

Supplementary Material

Email

Thank you for your interest in spreading the word about bioRxiv.

NOTE: Your email address is requested solely to identify you as the sender of this article.

Enter multiple addresses on separate lines or separate them with commas.
A generic binding pocket for small molecule IKs activators at the extracellular inter-subunit interface of KCNQ1 and KCNE1 channel complexes
(Your Name) has forwarded a page to you from bioRxiv
(Your Name) thought you would like to see this page from the bioRxiv website.
CAPTCHA
This question is for testing whether or not you are a human visitor and to prevent automated spam submissions.
Share
A generic binding pocket for small molecule IKs activators at the extracellular inter-subunit interface of KCNQ1 and KCNE1 channel complexes
Magnus Chan, Harutyun Sahakyan, Jodene Eldstrom, Daniel Sastre, Yundi Wang, Ying Dou, Marc Pourrier, Vitya Vardanyan, David Fedida
bioRxiv 2023.02.27.530167; doi: https://doi.org/10.1101/2023.02.27.530167
Twitter logo Facebook logo LinkedIn logo Mendeley logo
Citation Tools
A generic binding pocket for small molecule IKs activators at the extracellular inter-subunit interface of KCNQ1 and KCNE1 channel complexes
Magnus Chan, Harutyun Sahakyan, Jodene Eldstrom, Daniel Sastre, Yundi Wang, Ying Dou, Marc Pourrier, Vitya Vardanyan, David Fedida
bioRxiv 2023.02.27.530167; doi: https://doi.org/10.1101/2023.02.27.530167

Citation Manager Formats

  • BibTeX
  • Bookends
  • EasyBib
  • EndNote (tagged)
  • EndNote 8 (xml)
  • Medlars
  • Mendeley
  • Papers
  • RefWorks Tagged
  • Ref Manager
  • RIS
  • Zotero
  • Tweet Widget
  • Facebook Like
  • Google Plus One

Subject Area

  • Pharmacology and Toxicology
Subject Areas
All Articles
  • Animal Behavior and Cognition (6022)
  • Biochemistry (13708)
  • Bioengineering (10436)
  • Bioinformatics (33157)
  • Biophysics (17109)
  • Cancer Biology (14173)
  • Cell Biology (20106)
  • Clinical Trials (138)
  • Developmental Biology (10868)
  • Ecology (16018)
  • Epidemiology (2067)
  • Evolutionary Biology (20346)
  • Genetics (13395)
  • Genomics (18634)
  • Immunology (13750)
  • Microbiology (32164)
  • Molecular Biology (13392)
  • Neuroscience (70069)
  • Paleontology (526)
  • Pathology (2190)
  • Pharmacology and Toxicology (3741)
  • Physiology (5864)
  • Plant Biology (12020)
  • Scientific Communication and Education (1814)
  • Synthetic Biology (3367)
  • Systems Biology (8166)
  • Zoology (1841)