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Xenon-inhibition of the MscL mechano-sensitive channel and the CopB copper ATPase under different conditions suggests direct effects on these proteins

Xenon is frequently used as a general anesthetic in humans, but the mechanism remains an issue of debate. While for some membrane proteins, a direct interaction of xenon with the protein has been shown to be the inhibitory mechanism, other membrane protein functions could be affected by changes of m...

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Autores principales: Petrov, Evgeny, Menon, Gopalakrishnan, Rohde, Paul R., Battle, Andrew R., Martinac, Boris, Solioz, Marc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5986136/
https://www.ncbi.nlm.nih.gov/pubmed/29864148
http://dx.doi.org/10.1371/journal.pone.0198110
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author Petrov, Evgeny
Menon, Gopalakrishnan
Rohde, Paul R.
Battle, Andrew R.
Martinac, Boris
Solioz, Marc
author_facet Petrov, Evgeny
Menon, Gopalakrishnan
Rohde, Paul R.
Battle, Andrew R.
Martinac, Boris
Solioz, Marc
author_sort Petrov, Evgeny
collection PubMed
description Xenon is frequently used as a general anesthetic in humans, but the mechanism remains an issue of debate. While for some membrane proteins, a direct interaction of xenon with the protein has been shown to be the inhibitory mechanism, other membrane protein functions could be affected by changes of membrane properties due to partitioning of the gas into the lipid bilayer. Here, the effect of xenon on a mechanosensitive ion channel and a copper ion-translocating ATPase was compared under different conditions. Xenon inhibited spontaneous gating of the Escherichia coli mechano-sensitive mutant channel MscL-G22E, as shown by patch-clamp recording techniques. Under high hydrostatic pressure, MscL-inhibition was reversed. Similarly, the activity of the Enterococcus hirae CopB copper ATPase, reconstituted into proteoliposomes, was inhibited by xenon. However, the CopB ATPase activity was also inhibited by xenon when CopB was in a solubilized state. These findings suggest that xenon acts by directly interacting with these proteins, rather than via indirect effects by altering membrane properties. Also, inhibition of copper transport may be a novel effect of xenon that contributes to anesthesia.
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spelling pubmed-59861362018-06-16 Xenon-inhibition of the MscL mechano-sensitive channel and the CopB copper ATPase under different conditions suggests direct effects on these proteins Petrov, Evgeny Menon, Gopalakrishnan Rohde, Paul R. Battle, Andrew R. Martinac, Boris Solioz, Marc PLoS One Research Article Xenon is frequently used as a general anesthetic in humans, but the mechanism remains an issue of debate. While for some membrane proteins, a direct interaction of xenon with the protein has been shown to be the inhibitory mechanism, other membrane protein functions could be affected by changes of membrane properties due to partitioning of the gas into the lipid bilayer. Here, the effect of xenon on a mechanosensitive ion channel and a copper ion-translocating ATPase was compared under different conditions. Xenon inhibited spontaneous gating of the Escherichia coli mechano-sensitive mutant channel MscL-G22E, as shown by patch-clamp recording techniques. Under high hydrostatic pressure, MscL-inhibition was reversed. Similarly, the activity of the Enterococcus hirae CopB copper ATPase, reconstituted into proteoliposomes, was inhibited by xenon. However, the CopB ATPase activity was also inhibited by xenon when CopB was in a solubilized state. These findings suggest that xenon acts by directly interacting with these proteins, rather than via indirect effects by altering membrane properties. Also, inhibition of copper transport may be a novel effect of xenon that contributes to anesthesia. Public Library of Science 2018-06-04 /pmc/articles/PMC5986136/ /pubmed/29864148 http://dx.doi.org/10.1371/journal.pone.0198110 Text en © 2018 Petrov et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Petrov, Evgeny
Menon, Gopalakrishnan
Rohde, Paul R.
Battle, Andrew R.
Martinac, Boris
Solioz, Marc
Xenon-inhibition of the MscL mechano-sensitive channel and the CopB copper ATPase under different conditions suggests direct effects on these proteins
title Xenon-inhibition of the MscL mechano-sensitive channel and the CopB copper ATPase under different conditions suggests direct effects on these proteins
title_full Xenon-inhibition of the MscL mechano-sensitive channel and the CopB copper ATPase under different conditions suggests direct effects on these proteins
title_fullStr Xenon-inhibition of the MscL mechano-sensitive channel and the CopB copper ATPase under different conditions suggests direct effects on these proteins
title_full_unstemmed Xenon-inhibition of the MscL mechano-sensitive channel and the CopB copper ATPase under different conditions suggests direct effects on these proteins
title_short Xenon-inhibition of the MscL mechano-sensitive channel and the CopB copper ATPase under different conditions suggests direct effects on these proteins
title_sort xenon-inhibition of the mscl mechano-sensitive channel and the copb copper atpase under different conditions suggests direct effects on these proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5986136/
https://www.ncbi.nlm.nih.gov/pubmed/29864148
http://dx.doi.org/10.1371/journal.pone.0198110
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