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Probing the Structural Dynamics of the Activation Gate of KcsA Using Homo-FRET Measurements

The allosteric coupling between activation and inactivation processes is a common feature observed in K(+) channels. Particularly, in the prokaryotic KcsA channel the K(+) conduction process is controlled by the inner gate, which is activated by acidic pH, and by the selectivity filter (SF) or outer...

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Autores principales: Díaz-García, Clara, Renart, Maria Lourdes, Poveda, José Antonio, Giudici, Ana Marcela, González-Ros, José M., Prieto, Manuel, Coutinho, Ana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8584343/
https://www.ncbi.nlm.nih.gov/pubmed/34769384
http://dx.doi.org/10.3390/ijms222111954
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author Díaz-García, Clara
Renart, Maria Lourdes
Poveda, José Antonio
Giudici, Ana Marcela
González-Ros, José M.
Prieto, Manuel
Coutinho, Ana
author_facet Díaz-García, Clara
Renart, Maria Lourdes
Poveda, José Antonio
Giudici, Ana Marcela
González-Ros, José M.
Prieto, Manuel
Coutinho, Ana
author_sort Díaz-García, Clara
collection PubMed
description The allosteric coupling between activation and inactivation processes is a common feature observed in K(+) channels. Particularly, in the prokaryotic KcsA channel the K(+) conduction process is controlled by the inner gate, which is activated by acidic pH, and by the selectivity filter (SF) or outer gate, which can adopt non-conductive or conductive states. In a previous study, a single tryptophan mutant channel (W67 KcsA) enabled us to investigate the SF dynamics using time-resolved homo-Förster Resonance Energy Transfer (homo-FRET) measurements. Here, the conformational changes of both gates were simultaneously monitored after labelling the G116C position with tetramethylrhodamine (TMR) within a W67 KcsA background. At a high degree of protein labeling, fluorescence anisotropy measurements showed that the pH-induced KcsA gating elicited a variation in the homo-FRET efficiency among the conjugated TMR dyes (TMR homo-FRET), while the conformation of the SF was simultaneously tracked (W67 homo-FRET). The dependence of the activation pK(a) of the inner gate with the ion occupancy of the SF unequivocally confirmed the allosteric communication between the two gates of KcsA. This simple TMR homo-FRET based ratiometric assay can be easily extended to study the conformational dynamics associated with the gating of other ion channels and their modulation.
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spelling pubmed-85843432021-11-12 Probing the Structural Dynamics of the Activation Gate of KcsA Using Homo-FRET Measurements Díaz-García, Clara Renart, Maria Lourdes Poveda, José Antonio Giudici, Ana Marcela González-Ros, José M. Prieto, Manuel Coutinho, Ana Int J Mol Sci Article The allosteric coupling between activation and inactivation processes is a common feature observed in K(+) channels. Particularly, in the prokaryotic KcsA channel the K(+) conduction process is controlled by the inner gate, which is activated by acidic pH, and by the selectivity filter (SF) or outer gate, which can adopt non-conductive or conductive states. In a previous study, a single tryptophan mutant channel (W67 KcsA) enabled us to investigate the SF dynamics using time-resolved homo-Förster Resonance Energy Transfer (homo-FRET) measurements. Here, the conformational changes of both gates were simultaneously monitored after labelling the G116C position with tetramethylrhodamine (TMR) within a W67 KcsA background. At a high degree of protein labeling, fluorescence anisotropy measurements showed that the pH-induced KcsA gating elicited a variation in the homo-FRET efficiency among the conjugated TMR dyes (TMR homo-FRET), while the conformation of the SF was simultaneously tracked (W67 homo-FRET). The dependence of the activation pK(a) of the inner gate with the ion occupancy of the SF unequivocally confirmed the allosteric communication between the two gates of KcsA. This simple TMR homo-FRET based ratiometric assay can be easily extended to study the conformational dynamics associated with the gating of other ion channels and their modulation. MDPI 2021-11-04 /pmc/articles/PMC8584343/ /pubmed/34769384 http://dx.doi.org/10.3390/ijms222111954 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Díaz-García, Clara
Renart, Maria Lourdes
Poveda, José Antonio
Giudici, Ana Marcela
González-Ros, José M.
Prieto, Manuel
Coutinho, Ana
Probing the Structural Dynamics of the Activation Gate of KcsA Using Homo-FRET Measurements
title Probing the Structural Dynamics of the Activation Gate of KcsA Using Homo-FRET Measurements
title_full Probing the Structural Dynamics of the Activation Gate of KcsA Using Homo-FRET Measurements
title_fullStr Probing the Structural Dynamics of the Activation Gate of KcsA Using Homo-FRET Measurements
title_full_unstemmed Probing the Structural Dynamics of the Activation Gate of KcsA Using Homo-FRET Measurements
title_short Probing the Structural Dynamics of the Activation Gate of KcsA Using Homo-FRET Measurements
title_sort probing the structural dynamics of the activation gate of kcsa using homo-fret measurements
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8584343/
https://www.ncbi.nlm.nih.gov/pubmed/34769384
http://dx.doi.org/10.3390/ijms222111954
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