Published August 29, 2024 | Version v1
Journal article Open

Potassium dependent structural changes in the selectivity filter of HERG potassium channels

  • 1. Victor Chang Cardiac Research Institute
  • 2. RMIT University
  • 3. University of Wollongong
  • 4. UNSW Sydney
  • 5. University of Chicago

Description

The fine tuning of biological electrical signaling is mediated by variations in the rates of opening and closing of gates that control ion flux through different ion channels. Human ether-a-go-go related gene (HERG) potassium channels have uniquely rapid inactivation kinetics which are critical to the role they play in regulating cardiac electrical activity. Here, we exploit the K+ sensitivity of HERG inactivation to determine structures of both a conductive and non-conductive selectivity filter structure of HERG. The conductive state has a canonical cylindrical shaped selectivity filter. The non-conductive state is characterized by flipping of the selectivity filter valine backbone carbonyls to point away from the central axis. The side chain of S620 on the pore helix plays a central role in this process, by coordinating distinct sets of interactions in the conductive, non-conductive, and transition states. Our model represents a distinct mechanism by which ion channels fine tune their activity and could explain the uniquely rapid inactivation kinetics of HERG.

Data availability

The data that support this study are available from the corresponding authors upon request. The cryo-EM maps have been deposited in the Electron Microscopy Data Bank (EMDB) under accession codes EMDB-45597 (High-K+; C4); EMDB-45598 (Low-K+; C4); EMDB-45599 (High-K+; C1); and EMDB-45600 (Low-K+; C1). The atomic coordinates have been deposited in the Protein Data Bank (PDB) under accession codes. 9CHP (High-K+; C4); 9CHQ (Low-K+; C4); 9CHR (High-K+; C1); and 9CHS (Low-K+; C1). Previously published PDB used in this study: 5VA1; and 5VA3. The source data underlying Fig. 2D, E are provided as a Source data file. Source data are provided with this paper.

Files

Potassium-dependent-structural-changes-in-the-selectivity-filter-of-HERG-potassium-channels.pdf

Files (158.0 MB)

Additional details

Identifiers

DOI
10.1038/s41467-024-51208-w
Other
oai:uchicago.tind.io:13322

Funding

Australian Research Council
DP150101929
Australian Research Council
DP170101732
Australian Research Council
DP200102540
Australian Research Council
DP210102405
Australian Research Council
DP220103550
National Health and Medical Research Council
APP1116948
National Health and Medical Research Council
APP1141974
National Institutes of Health
1R01GM150272
National Computational Initiative
dd7

UChicago Information

Division(s)
Biological Sciences Division
Department(s)
Biochemistry and Molecular Biology