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February 19, 2026Proceedings of the National Academy of Sciences0 citations

Tuning the gate and the gear: The LRRC26 (γ1) subunit modulates intrinsic gating and voltage-sensor coupling of the BK channel

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FEFelipe EcheverríaAPAntonio Peña-PichicoiMFMiguel Fernandez

Key Points

  • This study aims to clarify how the γ1 subunit influences the gating mechanisms of BK channels.
  • Used macroscopic and single-channel measurements to analyze BK channel behavior.
  • Conducted gating-current measurements to assess channel transitions under varying voltage conditions.
  • Examined equilibrium constants in the presence of the γ1 subunit.
  • Demonstrated that γ1 increases the equilibrium constant for channel opening by 106-fold at zero mV.
  • Showed that γ1 destabilizes the closed state of BK channels, enhancing voltage sensor-pore coupling.
  • Found no effect of γ1 on the voltage-sensor activation process.

Abstract

Association of auxiliary subunits (β1-4 and γ1-4) with the pore-forming α subunit of the calcium- and voltage-activated potassium (BK) channel provides functional diversity. γ1 promotes a significant leftward shift in the voltage-activation curve, ensuring proper function of secretory glands and allowing BK channels to release K + at the cell’s resting Ca 2+ concentration. Given its physiological importance, it is crucial to elucidate the mechanisms of γ1 action. However, structural and functional studies have yielded conflicting conclusions regarding the modulation of BK channels by γ1. Here, using macroscopic, single-channel, and gating-current measurements, we demonstrate that at zero mV, γ1 increases 106-fold the equilibrium constant for the closed–open transition by destabilizing the channel’s closed state and enhancing coupling between the voltage sensor and the pore domain, without affecting voltage-sensor activation. These results suggest that γ1 not only increases the energetic coupling between the voltage sensors and the pore but also primarily enhances the channel-opening reaction.

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Cite This Study

Echeverría et al. (2026) studied this question.

synapsesocial.com/papers/6996a8d4ecb39a600b3f0001https://doi.org/10.1073/pnas.2526651123
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