Cholesterol Promotes Interaction of the Protein CLIC1 with Phospholipid Monolayers at the Air–Water Interface

CLIC1 is a Chloride Intracellular Ion Channel protein that exists either in a soluble state in the cytoplasm or as a membrane bound protein. Members of the CLIC family are largely soluble proteins that possess the intriguing property of spontaneous insertion into phospholipid bilayers to form integr...

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Main Authors: Khondker R. Hossain, Heba Al Khamici, Stephen A. Holt, Stella M. Valenzuela
Format: Article
Language:English
Published: MDPI AG 2016-02-01
Series:Membranes
Subjects:
Online Access:http://www.mdpi.com/2077-0375/6/1/15
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spelling doaj-8b746813ce294f878576b9c5fef1ecb52020-11-24T22:20:10ZengMDPI AGMembranes2077-03752016-02-01611510.3390/membranes6010015membranes6010015Cholesterol Promotes Interaction of the Protein CLIC1 with Phospholipid Monolayers at the Air–Water InterfaceKhondker R. Hossain0Heba Al Khamici1Stephen A. Holt2Stella M. Valenzuela3School of Life Sciences, University of Technology Sydney, Sydney, New South Wales 2007, AustraliaSchool of Life Sciences, University of Technology Sydney, Sydney, New South Wales 2007, AustraliaBragg Institute, Australian Nuclear Science and Technology Organisation (ANSTO), New South Wales 2234, AustraliaSchool of Life Sciences, University of Technology Sydney, Sydney, New South Wales 2007, AustraliaCLIC1 is a Chloride Intracellular Ion Channel protein that exists either in a soluble state in the cytoplasm or as a membrane bound protein. Members of the CLIC family are largely soluble proteins that possess the intriguing property of spontaneous insertion into phospholipid bilayers to form integral membrane ion channels. The regulatory role of cholesterol in the ion-channel activity of CLIC1 in tethered lipid bilayers was previously assessed using impedance spectroscopy. Here we extend this investigation by evaluating the influence of cholesterol on the spontaneous membrane insertion of CLIC1 into Langmuir film monolayers prepared using 1-palmitoyl-2-oleoylphosphatidylcholine, 1-palmitoyl-2-oleoyl-sn-glycero-3-phospho-ethanolamine and 1-palmitoyl-2-oleoyl-sn-glycero-3-phospho-L-serine alone or in combination with cholesterol. The spontaneous membrane insertion of CLIC1 was shown to be dependent on the presence of cholesterol in the membrane. Furthermore, pre-incubation of CLIC1 with cholesterol prior to its addition to the Langmuir film, showed no membrane insertion even in monolayers containing cholesterol, suggesting the formation of a CLIC1-cholesterol pre-complex. Our results therefore suggest that CLIC1 membrane interaction involves CLIC1 binding to cholesterol located in the membrane for its initial docking followed by insertion. Subsequent structural rearrangements of the protein would likely also be required along with oligomerisation to form functional ion channels.http://www.mdpi.com/2077-0375/6/1/15CLIC1membrane insertioncholesterolLangmuir monolayer filmphospholipidsPOPCPOPEPOPS
collection DOAJ
language English
format Article
sources DOAJ
author Khondker R. Hossain
Heba Al Khamici
Stephen A. Holt
Stella M. Valenzuela
spellingShingle Khondker R. Hossain
Heba Al Khamici
Stephen A. Holt
Stella M. Valenzuela
Cholesterol Promotes Interaction of the Protein CLIC1 with Phospholipid Monolayers at the Air–Water Interface
Membranes
CLIC1
membrane insertion
cholesterol
Langmuir monolayer film
phospholipids
POPC
POPE
POPS
author_facet Khondker R. Hossain
Heba Al Khamici
Stephen A. Holt
Stella M. Valenzuela
author_sort Khondker R. Hossain
title Cholesterol Promotes Interaction of the Protein CLIC1 with Phospholipid Monolayers at the Air–Water Interface
title_short Cholesterol Promotes Interaction of the Protein CLIC1 with Phospholipid Monolayers at the Air–Water Interface
title_full Cholesterol Promotes Interaction of the Protein CLIC1 with Phospholipid Monolayers at the Air–Water Interface
title_fullStr Cholesterol Promotes Interaction of the Protein CLIC1 with Phospholipid Monolayers at the Air–Water Interface
title_full_unstemmed Cholesterol Promotes Interaction of the Protein CLIC1 with Phospholipid Monolayers at the Air–Water Interface
title_sort cholesterol promotes interaction of the protein clic1 with phospholipid monolayers at the air–water interface
publisher MDPI AG
series Membranes
issn 2077-0375
publishDate 2016-02-01
description CLIC1 is a Chloride Intracellular Ion Channel protein that exists either in a soluble state in the cytoplasm or as a membrane bound protein. Members of the CLIC family are largely soluble proteins that possess the intriguing property of spontaneous insertion into phospholipid bilayers to form integral membrane ion channels. The regulatory role of cholesterol in the ion-channel activity of CLIC1 in tethered lipid bilayers was previously assessed using impedance spectroscopy. Here we extend this investigation by evaluating the influence of cholesterol on the spontaneous membrane insertion of CLIC1 into Langmuir film monolayers prepared using 1-palmitoyl-2-oleoylphosphatidylcholine, 1-palmitoyl-2-oleoyl-sn-glycero-3-phospho-ethanolamine and 1-palmitoyl-2-oleoyl-sn-glycero-3-phospho-L-serine alone or in combination with cholesterol. The spontaneous membrane insertion of CLIC1 was shown to be dependent on the presence of cholesterol in the membrane. Furthermore, pre-incubation of CLIC1 with cholesterol prior to its addition to the Langmuir film, showed no membrane insertion even in monolayers containing cholesterol, suggesting the formation of a CLIC1-cholesterol pre-complex. Our results therefore suggest that CLIC1 membrane interaction involves CLIC1 binding to cholesterol located in the membrane for its initial docking followed by insertion. Subsequent structural rearrangements of the protein would likely also be required along with oligomerisation to form functional ion channels.
topic CLIC1
membrane insertion
cholesterol
Langmuir monolayer film
phospholipids
POPC
POPE
POPS
url http://www.mdpi.com/2077-0375/6/1/15
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AT hebaalkhamici cholesterolpromotesinteractionoftheproteinclic1withphospholipidmonolayersattheairwaterinterface
AT stephenaholt cholesterolpromotesinteractionoftheproteinclic1withphospholipidmonolayersattheairwaterinterface
AT stellamvalenzuela cholesterolpromotesinteractionoftheproteinclic1withphospholipidmonolayersattheairwaterinterface
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