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Transformation of ActoHMM Assembly Confined in Cell-Sized Liposome

[Image: see text] To construct a simple model of a cellular system equipped with motor proteins, cell-sized giant liposomes encapsulating various amounts of actoHMM, the complexes of actin filaments (F-actin) and heavy meromyosin (HMM, an actin-related molecular motor), with a depletion reagent to m...

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Autores principales: Takiguchi, Kingo, Negishi, Makiko, Tanaka-Takiguchi, Yohko, Homma, Michio, Yoshikawa, Kenichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2011
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3171996/
https://www.ncbi.nlm.nih.gov/pubmed/21819144
http://dx.doi.org/10.1021/la2016287
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author Takiguchi, Kingo
Negishi, Makiko
Tanaka-Takiguchi, Yohko
Homma, Michio
Yoshikawa, Kenichi
author_facet Takiguchi, Kingo
Negishi, Makiko
Tanaka-Takiguchi, Yohko
Homma, Michio
Yoshikawa, Kenichi
author_sort Takiguchi, Kingo
collection PubMed
description [Image: see text] To construct a simple model of a cellular system equipped with motor proteins, cell-sized giant liposomes encapsulating various amounts of actoHMM, the complexes of actin filaments (F-actin) and heavy meromyosin (HMM, an actin-related molecular motor), with a depletion reagent to mimic the crowding effect of inside of living cell, were prepared. We adapted the methodology of the spontaneous transfer of water-in-oil (W/O) droplets through a phospholipid monolayer into the bulk aqueous phase and successfully prepared stable giant liposomes encapsulating the solution with a physiological salt concentration containing the desired concentrations of actoHMM, which had been almost impossible to obtain using currently adapted methodologies such as natural swelling and electro-formation on an electrode. We then examined the effect of ATP on the cytoskeleton components confined in those cell-sized liposomes, because ATP is known to drive the sliding motion for actoHMM. We added α-hemolysin, a bacterial membrane pore-forming toxin, to the bathing solution and obtained liposomes with the protein pores embedded on the bilayer membrane to allow the transfer of ATP inside the liposomes. We show that, by the ATP supply, the actoHMM bundles inside the liposomes exhibit specific changes in spatial distribution, caused by the active sliding between F-actin and HMM. Interestingly, all F-actins localized around the inner periphery of liposomes smaller than a critical size, whereas in the bulk solution and also in larger liposomes, the actin bundles formed aster-like structures under the same conditions.
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spelling pubmed-31719962011-09-13 Transformation of ActoHMM Assembly Confined in Cell-Sized Liposome Takiguchi, Kingo Negishi, Makiko Tanaka-Takiguchi, Yohko Homma, Michio Yoshikawa, Kenichi Langmuir [Image: see text] To construct a simple model of a cellular system equipped with motor proteins, cell-sized giant liposomes encapsulating various amounts of actoHMM, the complexes of actin filaments (F-actin) and heavy meromyosin (HMM, an actin-related molecular motor), with a depletion reagent to mimic the crowding effect of inside of living cell, were prepared. We adapted the methodology of the spontaneous transfer of water-in-oil (W/O) droplets through a phospholipid monolayer into the bulk aqueous phase and successfully prepared stable giant liposomes encapsulating the solution with a physiological salt concentration containing the desired concentrations of actoHMM, which had been almost impossible to obtain using currently adapted methodologies such as natural swelling and electro-formation on an electrode. We then examined the effect of ATP on the cytoskeleton components confined in those cell-sized liposomes, because ATP is known to drive the sliding motion for actoHMM. We added α-hemolysin, a bacterial membrane pore-forming toxin, to the bathing solution and obtained liposomes with the protein pores embedded on the bilayer membrane to allow the transfer of ATP inside the liposomes. We show that, by the ATP supply, the actoHMM bundles inside the liposomes exhibit specific changes in spatial distribution, caused by the active sliding between F-actin and HMM. Interestingly, all F-actins localized around the inner periphery of liposomes smaller than a critical size, whereas in the bulk solution and also in larger liposomes, the actin bundles formed aster-like structures under the same conditions. American Chemical Society 2011-08-08 2011-09-20 /pmc/articles/PMC3171996/ /pubmed/21819144 http://dx.doi.org/10.1021/la2016287 Text en Copyright © 2011 American Chemical Society http://pubs.acs.org This is an open-access article distributed under the ACS AuthorChoice Terms & Conditions. Any use of this article, must conform to the terms of that license which are available at http://pubs.acs.org.
spellingShingle Takiguchi, Kingo
Negishi, Makiko
Tanaka-Takiguchi, Yohko
Homma, Michio
Yoshikawa, Kenichi
Transformation of ActoHMM Assembly Confined in Cell-Sized Liposome
title Transformation of ActoHMM Assembly Confined in Cell-Sized Liposome
title_full Transformation of ActoHMM Assembly Confined in Cell-Sized Liposome
title_fullStr Transformation of ActoHMM Assembly Confined in Cell-Sized Liposome
title_full_unstemmed Transformation of ActoHMM Assembly Confined in Cell-Sized Liposome
title_short Transformation of ActoHMM Assembly Confined in Cell-Sized Liposome
title_sort transformation of actohmm assembly confined in cell-sized liposome
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3171996/
https://www.ncbi.nlm.nih.gov/pubmed/21819144
http://dx.doi.org/10.1021/la2016287
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