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dc.contributor.author
Fernández, Miguel
dc.contributor.author
Alvear Arias, Juan José
dc.contributor.author
Carmona, Emerson M.
dc.contributor.author
Carrillo, Christian
dc.contributor.author
Pena Pichicoi, Antonio
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Hernandez Ochoa, Erick O.
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Neely, Alan
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Alvarez, Osvaldo
dc.contributor.author
Latorre, Ramon
dc.contributor.author
Garate, Jose A.
dc.contributor.author
Gonzalez, Carlos
dc.date.available
2024-02-23T10:26:13Z
dc.date.issued
2023-12
dc.identifier.citation
Fernández, Miguel; Alvear Arias, Juan José; Carmona, Emerson M.; Carrillo, Christian; Pena Pichicoi, Antonio; et al.; Trapping Charge Mechanism in Hv1 Channels (CiHv1); Molecular Diversity Preservation International; International Journal of Molecular Sciences; 25; 1; 12-2023; 1-21
dc.identifier.issn
1422-0067
dc.identifier.uri
http://hdl.handle.net/11336/228111
dc.description.abstract
The majority of voltage-gated ion channels contain a defined voltage-sensing domain and a pore domain composed of highly conserved amino acid residues that confer electrical excitability via electromechanical coupling. In this sense, the voltage-gated proton channel (Hv1) is a unique protein in that voltage-sensing, proton permeation and pH-dependent modulation involve the same structural region. In fact, these processes synergistically work in concert, and it is difficult to separate them. To investigate the process of Hv1 voltage sensor trapping, we follow voltage-sensor movements directly by leveraging mutations that enable the measurement of Hv1 channel gating currents. We uncover that the process of voltage sensor displacement is due to two driving forces. The first reveals that mutations in the selectivity filter (D160) located in the S1 transmembrane interact with the voltage sensor. More hydrophobic amino acids increase the energy barrier for voltage sensor activation. On the other hand, the effect of positive charges near position 264 promotes the formation of salt bridges between the arginines of the voltage sensor domain, achieving a stable conformation over time. Our results suggest that the activation of the Hv1 voltage sensor is governed by electrostatic–hydrophobic interactions, and S4 arginines, N264 and selectivity filter (D160) are essential in the Ciona-Hv1 to understand the trapping of the voltage sensor.
dc.format
application/pdf
dc.language.iso
eng
dc.publisher
Molecular Diversity Preservation International
dc.rights
info:eu-repo/semantics/openAccess
dc.rights.uri
https://creativecommons.org/licenses/by/2.5/ar/
dc.subject
CHARGE TRAPPING
dc.subject
CIONA INTESTINALIS
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GATING CURRENTS
dc.subject
PROTON CHANNEL
dc.subject.classification
Biofísica
dc.subject.classification
Ciencias Biológicas
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CIENCIAS NATURALES Y EXACTAS
dc.title
Trapping Charge Mechanism in Hv1 Channels (CiHv1)
dc.type
info:eu-repo/semantics/article
dc.type
info:ar-repo/semantics/artículo
dc.type
info:eu-repo/semantics/publishedVersion
dc.date.updated
2024-02-22T11:01:51Z
dc.journal.volume
25
dc.journal.number
1
dc.journal.pagination
1-21
dc.journal.pais
Suiza
dc.description.fil
Fil: Fernández, Miguel. Universidad de Valparaíso; Chile
dc.description.fil
Fil: Alvear Arias, Juan José. Universidad de Valparaíso; Chile. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Ciudad Universitaria. Instituto de Biodiversidad y Biología Experimental y Aplicada. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales. Instituto de Biodiversidad y Biología Experimental y Aplicada; Argentina
dc.description.fil
Fil: Carmona, Emerson M.. No especifíca;
dc.description.fil
Fil: Carrillo, Christian. Universidad de Valparaíso; Chile
dc.description.fil
Fil: Pena Pichicoi, Antonio. Universidad de Valparaíso; Chile
dc.description.fil
Fil: Hernandez Ochoa, Erick O.. University of Maryland; Estados Unidos
dc.description.fil
Fil: Neely, Alan. Universidad de Valparaíso; Chile
dc.description.fil
Fil: Alvarez, Osvaldo. Universidad de Chile; Chile
dc.description.fil
Fil: Latorre, Ramon. Universidad de Valparaíso; Chile
dc.description.fil
Fil: Garate, Jose A.. Universidad San Sebastián; Chile
dc.description.fil
Fil: Gonzalez, Carlos. University of Texas at Austin; Estados Unidos
dc.journal.title
International Journal of Molecular Sciences
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/url/https://www.mdpi.com/1422-0067/25/1/426
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/doi/http://dx.doi.org/10.3390/ijms25010426
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