Redox regulation of KV7 channels through EF3 hand of calmodulin

Author:

Nuñez Eider1,Jones Frederick2,Muguruza-Montero Arantza1,Urrutia Janire1ORCID,Aguado Alejandra1,Malo Covadonga1,Bernardo-Seisdedos Ganeko3,Domene Carmen45,Millet Oscar6,Gamper Nikita2ORCID,Villarroel Alvaro1ORCID

Affiliation:

1. Instituto Biofisika, CSIC-UPV/EHU

2. School of Biomedical Sciences, Faculty of Biological Sciences, University of Leeds

3. Atlas Molecular Pharma S.L

4. Department of Chemistry, University of Bath

5. Department of Chemistry, University of Oxford

6. Protein Stability and Inherited Disease Laboratory, CIC bioGUNE

Abstract

Neuronal KV7 channels, important regulators of cell excitability, are among the most sensitive proteins to reactive oxygen species. The S2S3 linker of the voltage sensor was reported as a site-mediating redox modulation of the channels. Recent structural insights reveal potential interactions between this linker and the Ca2+-binding loop of the third EF-hand of calmodulin (CaM), which embraces an antiparallel fork formed by the C-terminal helices A and B, constituting the calcium responsive domain (CRD). We found that precluding Ca2+ binding to the EF3 hand, but not to EF1, EF2, or EF4 hands, abolishes oxidation-induced enhancement of KV7.4 currents. Monitoring FRET (Fluorescence Resonance Energy Transfer) between helices A and B using purified CRDs tagged with fluorescent proteins, we observed that S2S3 peptides cause a reversal of the signal in the presence of Ca2+ but have no effect in the absence of this cation or if the peptide is oxidized. The capacity of loading EF3 with Ca2+ is essential for this reversal of the FRET signal, whereas the consequences of obliterating Ca2+ binding to EF1, EF2, or EF4 are negligible. Furthermore, we show that EF3 is critical for translating Ca2+ signals to reorient the AB fork. Our data are consistent with the proposal that oxidation of cysteine residues in the S2S3 loop relieves KV7 channels from a constitutive inhibition imposed by interactions between the EF3 hand of CaM which is crucial for this signaling.

Funder

Ministerio de Ciencia e Innovación

Wellcome Trust

Medical Research Centre

Eusko Jaurlaritza

Ekonomiaren Garapen eta Lehiakortasun Saila, Eusko Jaurlaritza

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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