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Oriented Insertion of ESR-Containing Hybrid Proteins in Proteoliposomes

Microbial rhodopsins comprise a diverse family of retinal-containing membrane proteins that convert absorbed light energy to transmembrane ion transport or sensory signals. Incorporation of these proteins in proteoliposomes allows their properties to be studied in a native-like environment; however,...

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Autores principales: Petrovskaya, Lada E., Lukashev, Evgeniy P., Mamedov, Mahir D., Kryukova, Elena A., Balashov, Sergei P., Dolgikh, Dmitry A., Rubin, Andrei B., Kirpichnikov, Mikhail P., Siletsky, Sergey A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10138546/
https://www.ncbi.nlm.nih.gov/pubmed/37108532
http://dx.doi.org/10.3390/ijms24087369
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author Petrovskaya, Lada E.
Lukashev, Evgeniy P.
Mamedov, Mahir D.
Kryukova, Elena A.
Balashov, Sergei P.
Dolgikh, Dmitry A.
Rubin, Andrei B.
Kirpichnikov, Mikhail P.
Siletsky, Sergey A.
author_facet Petrovskaya, Lada E.
Lukashev, Evgeniy P.
Mamedov, Mahir D.
Kryukova, Elena A.
Balashov, Sergei P.
Dolgikh, Dmitry A.
Rubin, Andrei B.
Kirpichnikov, Mikhail P.
Siletsky, Sergey A.
author_sort Petrovskaya, Lada E.
collection PubMed
description Microbial rhodopsins comprise a diverse family of retinal-containing membrane proteins that convert absorbed light energy to transmembrane ion transport or sensory signals. Incorporation of these proteins in proteoliposomes allows their properties to be studied in a native-like environment; however, unidirectional protein orientation in the artificial membranes is rarely observed. We aimed to obtain proteoliposomes with unidirectional orientation using a proton-pumping retinal protein from Exiguobacterium sibiricum, ESR, as a model. Three ESR hybrids with soluble protein domains (mCherry or thioredoxin at the C-terminus and Caf1M chaperone at the N-terminus) were obtained and characterized. The photocycle of the hybrid proteins incorporated in proteoliposomes demonstrated a higher pK(a) of the M state accumulation compared to that of the wild-type ESR. Large negative electrogenic phases and an increase in the relative amplitude of kinetic components in the microsecond time range in the kinetics of membrane potential generation of ESR-Cherry and ESR-Trx indicate a decrease in the efficiency of transmembrane proton transport. On the contrary, Caf-ESR demonstrates a native-like kinetics of membrane potential generation and the corresponding electrogenic stages. Our experiments show that the hybrid with Caf1M promotes the unidirectional orientation of ESR in proteoliposomes.
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spelling pubmed-101385462023-04-28 Oriented Insertion of ESR-Containing Hybrid Proteins in Proteoliposomes Petrovskaya, Lada E. Lukashev, Evgeniy P. Mamedov, Mahir D. Kryukova, Elena A. Balashov, Sergei P. Dolgikh, Dmitry A. Rubin, Andrei B. Kirpichnikov, Mikhail P. Siletsky, Sergey A. Int J Mol Sci Article Microbial rhodopsins comprise a diverse family of retinal-containing membrane proteins that convert absorbed light energy to transmembrane ion transport or sensory signals. Incorporation of these proteins in proteoliposomes allows their properties to be studied in a native-like environment; however, unidirectional protein orientation in the artificial membranes is rarely observed. We aimed to obtain proteoliposomes with unidirectional orientation using a proton-pumping retinal protein from Exiguobacterium sibiricum, ESR, as a model. Three ESR hybrids with soluble protein domains (mCherry or thioredoxin at the C-terminus and Caf1M chaperone at the N-terminus) were obtained and characterized. The photocycle of the hybrid proteins incorporated in proteoliposomes demonstrated a higher pK(a) of the M state accumulation compared to that of the wild-type ESR. Large negative electrogenic phases and an increase in the relative amplitude of kinetic components in the microsecond time range in the kinetics of membrane potential generation of ESR-Cherry and ESR-Trx indicate a decrease in the efficiency of transmembrane proton transport. On the contrary, Caf-ESR demonstrates a native-like kinetics of membrane potential generation and the corresponding electrogenic stages. Our experiments show that the hybrid with Caf1M promotes the unidirectional orientation of ESR in proteoliposomes. MDPI 2023-04-17 /pmc/articles/PMC10138546/ /pubmed/37108532 http://dx.doi.org/10.3390/ijms24087369 Text en © 2023 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
Petrovskaya, Lada E.
Lukashev, Evgeniy P.
Mamedov, Mahir D.
Kryukova, Elena A.
Balashov, Sergei P.
Dolgikh, Dmitry A.
Rubin, Andrei B.
Kirpichnikov, Mikhail P.
Siletsky, Sergey A.
Oriented Insertion of ESR-Containing Hybrid Proteins in Proteoliposomes
title Oriented Insertion of ESR-Containing Hybrid Proteins in Proteoliposomes
title_full Oriented Insertion of ESR-Containing Hybrid Proteins in Proteoliposomes
title_fullStr Oriented Insertion of ESR-Containing Hybrid Proteins in Proteoliposomes
title_full_unstemmed Oriented Insertion of ESR-Containing Hybrid Proteins in Proteoliposomes
title_short Oriented Insertion of ESR-Containing Hybrid Proteins in Proteoliposomes
title_sort oriented insertion of esr-containing hybrid proteins in proteoliposomes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10138546/
https://www.ncbi.nlm.nih.gov/pubmed/37108532
http://dx.doi.org/10.3390/ijms24087369
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