Proton currents constrain structural models of voltage sensor activation
The Hv1 proton channel is evidently unique among voltage sensor domain proteins in mediating an intrinsic ‘aqueous’ H+ conductance (GAQ). Mutation of a highly conserved ‘gating charge’ residue in the S4 helix (R1H) confers a resting-state H+ ‘shuttle’ conductance (GSH) in VGCs and Ci VSP, and we now...
Những tác giả chính: | Aaron L Randolph, Younes Mokrab, Ashley L Bennett, Mark SP Sansom, Ian Scott Ramsey |
---|---|
Định dạng: | Bài viết |
Ngôn ngữ: | English |
Được phát hành: |
eLife Sciences Publications Ltd
2016-08-01
|
Loạt: | eLife |
Những chủ đề: | |
Truy cập trực tuyến: | https://elifesciences.org/articles/18017 |
Những quyển sách tương tự
-
Structural dynamics determine voltage and pH gating in human voltage-gated proton channel
Bằng: Shuo Han, et al.
Được phát hành: (2022-03-01) -
Water, Protons, and the Gating of Voltage-Gated Potassium Channels
Bằng: Alisher M. Kariev, et al.
Được phát hành: (2024-01-01) -
Alpha-1 Antitrypsin Augmentation Inhibits Proteolysis of Neutrophil Membrane Voltage-Gated Proton Channel-1 in Alpha-1 Deficient Individuals
Bằng: Padraig Hawkins, et al.
Được phát hành: (2021-08-01) -
Neurovascular protection in voltage‐gated proton channel Hv1 knock‐out rats after ischemic stroke: interaction with Na+/H+ exchanger‐1 antagonism
Bằng: Weiguo Li, et al.
Được phát hành: (2019-07-01) -
Phosphatidic acid modulation of Kv channel voltage sensor function
Bằng: Richard K Hite, et al.
Được phát hành: (2014-10-01)