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  • Physiological roles of hete... Physiological roles of heteromerization: focus on the two‐pore domain potassium channels
    Khoubza, Lamyaa; Chatelain, Franck C.; Feliciangeli, Sylvain ... Journal of physiology, 02/2021, Volume: 599, Issue: 4
    Journal Article
    Peer reviewed
    Open access

    Potassium channels form the largest family of ion channels with more than 80 members involved in cell excitability and signalling. Most of them exist as homomeric channels, whereas specific ...
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  • Mutation of a single residu... Mutation of a single residue promotes gating of vertebrate and invertebrate two-pore domain potassium channels
    Ben Soussia, Ismail; El Mouridi, Sonia; Kang, Dawon ... Nature communications, 02/2019, Volume: 10, Issue: 1
    Journal Article
    Peer reviewed
    Open access

    Mutations that modulate the activity of ion channels are essential tools to understand the biophysical determinants that control their gating. Here, we reveal the conserved role played by a single ...
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  • Heterodimerization of TALK ... Heterodimerization of TALK Subunits
    Khoubza, Lamyaa; Chatelain, Franck; Feliciangeli, Sylvain ... Biophysical journal, 02/2020, Volume: 118, Issue: 3
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    Open access
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  • Alkaline-sensitive two-pore... Alkaline-sensitive two-pore domain potassium channels form functional heteromers in pancreatic β-cells
    Khoubza, Lamyaa; Gilbert, Nicolas; Kim, Eun-Jin ... Journal of biological chemistry/˜The œJournal of biological chemistry, 10/2022, Volume: 298, Issue: 10
    Journal Article
    Peer reviewed
    Open access

    Two-pore domain K+ channels (K2P channels), active as dimers, produce inhibitory currents regulated by a variety of stimuli. Among them, TWIK1-related alkalinization-activated K+ channel 1 (TALK1), ...
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