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Members of the Chloride Intracellular Ion Channel Protein Family Demonstrate Glutaredoxin-Like Enzymatic Activity

The Chloride Intracellular Ion Channel (CLIC) family consists of six evolutionarily conserved proteins in humans. Members of this family are unusual, existing as both monomeric soluble proteins and as integral membrane proteins where they function as chloride selective ion channels, however no funct...

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Autores principales: Al Khamici, Heba, Brown, Louise J., Hossain, Khondker R., Hudson, Amanda L., Sinclair-Burton, Alxcia A., Ng, Jane Phui Mun, Daniel, Elizabeth L., Hare, Joanna E., Cornell, Bruce A., Curmi, Paul M. G., Davey, Mary W., Valenzuela, Stella M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4291220/
https://www.ncbi.nlm.nih.gov/pubmed/25581026
http://dx.doi.org/10.1371/journal.pone.0115699
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author Al Khamici, Heba
Brown, Louise J.
Hossain, Khondker R.
Hudson, Amanda L.
Sinclair-Burton, Alxcia A.
Ng, Jane Phui Mun
Daniel, Elizabeth L.
Hare, Joanna E.
Cornell, Bruce A.
Curmi, Paul M. G.
Davey, Mary W.
Valenzuela, Stella M.
author_facet Al Khamici, Heba
Brown, Louise J.
Hossain, Khondker R.
Hudson, Amanda L.
Sinclair-Burton, Alxcia A.
Ng, Jane Phui Mun
Daniel, Elizabeth L.
Hare, Joanna E.
Cornell, Bruce A.
Curmi, Paul M. G.
Davey, Mary W.
Valenzuela, Stella M.
author_sort Al Khamici, Heba
collection PubMed
description The Chloride Intracellular Ion Channel (CLIC) family consists of six evolutionarily conserved proteins in humans. Members of this family are unusual, existing as both monomeric soluble proteins and as integral membrane proteins where they function as chloride selective ion channels, however no function has previously been assigned to their soluble form. Structural studies have shown that in the soluble form, CLIC proteins adopt a glutathione S-transferase (GST) fold, however, they have an active site with a conserved glutaredoxin monothiol motif, similar to the omega class GSTs. We demonstrate that CLIC proteins have glutaredoxin-like glutathione-dependent oxidoreductase enzymatic activity. CLICs 1, 2 and 4 demonstrate typical glutaredoxin-like activity using 2-hydroxyethyl disulfide as a substrate. Mutagenesis experiments identify cysteine 24 as the catalytic cysteine residue in CLIC1, which is consistent with its structure. CLIC1 was shown to reduce sodium selenite and dehydroascorbate in a glutathione-dependent manner. Previous electrophysiological studies have shown that the drugs IAA-94 and A9C specifically block CLIC channel activity. These same compounds inhibit CLIC1 oxidoreductase activity. This work for the first time assigns a functional activity to the soluble form of the CLIC proteins. Our results demonstrate that the soluble form of the CLIC proteins has an enzymatic activity that is distinct from the channel activity of their integral membrane form. This CLIC enzymatic activity may be important for protecting the intracellular environment against oxidation. It is also likely that this enzymatic activity regulates the CLIC ion channel function.
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spelling pubmed-42912202015-01-21 Members of the Chloride Intracellular Ion Channel Protein Family Demonstrate Glutaredoxin-Like Enzymatic Activity Al Khamici, Heba Brown, Louise J. Hossain, Khondker R. Hudson, Amanda L. Sinclair-Burton, Alxcia A. Ng, Jane Phui Mun Daniel, Elizabeth L. Hare, Joanna E. Cornell, Bruce A. Curmi, Paul M. G. Davey, Mary W. Valenzuela, Stella M. PLoS One Research Article The Chloride Intracellular Ion Channel (CLIC) family consists of six evolutionarily conserved proteins in humans. Members of this family are unusual, existing as both monomeric soluble proteins and as integral membrane proteins where they function as chloride selective ion channels, however no function has previously been assigned to their soluble form. Structural studies have shown that in the soluble form, CLIC proteins adopt a glutathione S-transferase (GST) fold, however, they have an active site with a conserved glutaredoxin monothiol motif, similar to the omega class GSTs. We demonstrate that CLIC proteins have glutaredoxin-like glutathione-dependent oxidoreductase enzymatic activity. CLICs 1, 2 and 4 demonstrate typical glutaredoxin-like activity using 2-hydroxyethyl disulfide as a substrate. Mutagenesis experiments identify cysteine 24 as the catalytic cysteine residue in CLIC1, which is consistent with its structure. CLIC1 was shown to reduce sodium selenite and dehydroascorbate in a glutathione-dependent manner. Previous electrophysiological studies have shown that the drugs IAA-94 and A9C specifically block CLIC channel activity. These same compounds inhibit CLIC1 oxidoreductase activity. This work for the first time assigns a functional activity to the soluble form of the CLIC proteins. Our results demonstrate that the soluble form of the CLIC proteins has an enzymatic activity that is distinct from the channel activity of their integral membrane form. This CLIC enzymatic activity may be important for protecting the intracellular environment against oxidation. It is also likely that this enzymatic activity regulates the CLIC ion channel function. Public Library of Science 2015-01-12 /pmc/articles/PMC4291220/ /pubmed/25581026 http://dx.doi.org/10.1371/journal.pone.0115699 Text en © 2015 Al Khamici 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Al Khamici, Heba
Brown, Louise J.
Hossain, Khondker R.
Hudson, Amanda L.
Sinclair-Burton, Alxcia A.
Ng, Jane Phui Mun
Daniel, Elizabeth L.
Hare, Joanna E.
Cornell, Bruce A.
Curmi, Paul M. G.
Davey, Mary W.
Valenzuela, Stella M.
Members of the Chloride Intracellular Ion Channel Protein Family Demonstrate Glutaredoxin-Like Enzymatic Activity
title Members of the Chloride Intracellular Ion Channel Protein Family Demonstrate Glutaredoxin-Like Enzymatic Activity
title_full Members of the Chloride Intracellular Ion Channel Protein Family Demonstrate Glutaredoxin-Like Enzymatic Activity
title_fullStr Members of the Chloride Intracellular Ion Channel Protein Family Demonstrate Glutaredoxin-Like Enzymatic Activity
title_full_unstemmed Members of the Chloride Intracellular Ion Channel Protein Family Demonstrate Glutaredoxin-Like Enzymatic Activity
title_short Members of the Chloride Intracellular Ion Channel Protein Family Demonstrate Glutaredoxin-Like Enzymatic Activity
title_sort members of the chloride intracellular ion channel protein family demonstrate glutaredoxin-like enzymatic activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4291220/
https://www.ncbi.nlm.nih.gov/pubmed/25581026
http://dx.doi.org/10.1371/journal.pone.0115699
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