The voltage sensor is responsible for ApH dependence in Hv1 channels
Abstract
The dissipation of acute acid loads by the voltage-gated proton channel (Hv1) relies on regulating the channel's open probability by the voltage and the ÎpH across the membrane (ÎpH = pHex- pHin). Using monomeric Ciona-Hv1, we asked whether ÎpHdependent gating is produced during the voltage sensor activation or permeation pathway opening. A leftward shift of the conductance-voltage (G-V) curve was produced at higher ÎpH values in the monomeric channel. Next, we measured the voltage sensor pH dependence in the absence of a functional permeation pathway by recording gating currents in the monomeric nonconducting D160N mutant. Increasing the ÎpH leftward shifted the gating charge-voltage (Q-V) curve, demonstrating that the ÎpHdependent gating in Hv1 arises by modulating its voltage sensor. We fitted our data to a model that explicitly supposes the Hv1 voltage sensor free energy is a function of both the proton chemical and the electrical potential. The parameters obtained showed that around 60% of the free energy stored in the ÎpH is coupled to the Hv1 voltage sensor activation. Our results suggest that the molecular mechanism underlying the Hv1 ÎpH dependence is produced by protons, which alter the free-energy landscape around the voltage sensor domain. We propose that this alteration is produced by accessibility changes of the protons in the Hv1 voltage sensor during activation.
Más información
| Título según WOS: | The voltage sensor is responsible for ApH dependence in Hv1 channels |
| Título según SCOPUS: | The voltage sensor is responsible for ÎpH dependence in Hv1 channels |
| Título de la Revista: | Proceedings of the National Academy of Sciences of the United States of America |
| Volumen: | 118 |
| Número: | 19 |
| Editorial: | National Academy of Sciences |
| Fecha de publicación: | 2021 |
| Idioma: | English |
| DOI: |
10.1073/pnas.2025556118 |
| Notas: | ISI, SCOPUS |