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Distinct Functional Interactions between Actin Isoforms and Nonsarcomeric Myosins

Despite their near sequence identity, actin isoforms cannot completely replace each other in vivo and show marked differences in their tissue-specific and subcellular localization. Little is known about isoform-specific differences in their interactions with myosin motors and other actin-binding pro...

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Autores principales: Müller, Mirco, Diensthuber, Ralph P., Chizhov, Igor, Claus, Peter, Heissler, Sarah M., Preller, Matthias, Taft, Manuel H., Manstein, Dietmar J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3724804/
https://www.ncbi.nlm.nih.gov/pubmed/23923011
http://dx.doi.org/10.1371/journal.pone.0070636
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author Müller, Mirco
Diensthuber, Ralph P.
Chizhov, Igor
Claus, Peter
Heissler, Sarah M.
Preller, Matthias
Taft, Manuel H.
Manstein, Dietmar J.
author_facet Müller, Mirco
Diensthuber, Ralph P.
Chizhov, Igor
Claus, Peter
Heissler, Sarah M.
Preller, Matthias
Taft, Manuel H.
Manstein, Dietmar J.
author_sort Müller, Mirco
collection PubMed
description Despite their near sequence identity, actin isoforms cannot completely replace each other in vivo and show marked differences in their tissue-specific and subcellular localization. Little is known about isoform-specific differences in their interactions with myosin motors and other actin-binding proteins. Mammalian cytoplasmic β- and γ-actin interact with nonsarcomeric conventional myosins such as the members of the nonmuscle myosin-2 family and myosin-7A. These interactions support a wide range of cellular processes including cytokinesis, maintenance of cell polarity, cell adhesion, migration, and mechano-electrical transduction. To elucidate differences in the ability of isoactins to bind and stimulate the enzymatic activity of individual myosin isoforms, we characterized the interactions of human skeletal muscle α-actin, cytoplasmic β-actin, and cytoplasmic γ-actin with human myosin-7A and nonmuscle myosins-2A, -2B and -2C1. In the case of nonmuscle myosins-2A and -2B, the interaction with either cytoplasmic actin isoform results in 4-fold greater stimulation of myosin ATPase activity than was observed in the presence of α-skeletal muscle actin. Nonmuscle myosin-2C1 is most potently activated by β-actin and myosin-7A by γ-actin. Our results indicate that β- and γ-actin isoforms contribute to the modulation of nonmuscle myosin-2 and myosin-7A activity and thereby to the spatial and temporal regulation of cytoskeletal dynamics. FRET-based analyses show efficient copolymerization abilities for the actin isoforms in vitro. Experiments with hybrid actin filaments show that the extent of actomyosin coupling efficiency can be regulated by the isoform composition of actin filaments.
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spelling pubmed-37248042013-08-06 Distinct Functional Interactions between Actin Isoforms and Nonsarcomeric Myosins Müller, Mirco Diensthuber, Ralph P. Chizhov, Igor Claus, Peter Heissler, Sarah M. Preller, Matthias Taft, Manuel H. Manstein, Dietmar J. PLoS One Research Article Despite their near sequence identity, actin isoforms cannot completely replace each other in vivo and show marked differences in their tissue-specific and subcellular localization. Little is known about isoform-specific differences in their interactions with myosin motors and other actin-binding proteins. Mammalian cytoplasmic β- and γ-actin interact with nonsarcomeric conventional myosins such as the members of the nonmuscle myosin-2 family and myosin-7A. These interactions support a wide range of cellular processes including cytokinesis, maintenance of cell polarity, cell adhesion, migration, and mechano-electrical transduction. To elucidate differences in the ability of isoactins to bind and stimulate the enzymatic activity of individual myosin isoforms, we characterized the interactions of human skeletal muscle α-actin, cytoplasmic β-actin, and cytoplasmic γ-actin with human myosin-7A and nonmuscle myosins-2A, -2B and -2C1. In the case of nonmuscle myosins-2A and -2B, the interaction with either cytoplasmic actin isoform results in 4-fold greater stimulation of myosin ATPase activity than was observed in the presence of α-skeletal muscle actin. Nonmuscle myosin-2C1 is most potently activated by β-actin and myosin-7A by γ-actin. Our results indicate that β- and γ-actin isoforms contribute to the modulation of nonmuscle myosin-2 and myosin-7A activity and thereby to the spatial and temporal regulation of cytoskeletal dynamics. FRET-based analyses show efficient copolymerization abilities for the actin isoforms in vitro. Experiments with hybrid actin filaments show that the extent of actomyosin coupling efficiency can be regulated by the isoform composition of actin filaments. Public Library of Science 2013-07-26 /pmc/articles/PMC3724804/ /pubmed/23923011 http://dx.doi.org/10.1371/journal.pone.0070636 Text en © 2013 Müller 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
Müller, Mirco
Diensthuber, Ralph P.
Chizhov, Igor
Claus, Peter
Heissler, Sarah M.
Preller, Matthias
Taft, Manuel H.
Manstein, Dietmar J.
Distinct Functional Interactions between Actin Isoforms and Nonsarcomeric Myosins
title Distinct Functional Interactions between Actin Isoforms and Nonsarcomeric Myosins
title_full Distinct Functional Interactions between Actin Isoforms and Nonsarcomeric Myosins
title_fullStr Distinct Functional Interactions between Actin Isoforms and Nonsarcomeric Myosins
title_full_unstemmed Distinct Functional Interactions between Actin Isoforms and Nonsarcomeric Myosins
title_short Distinct Functional Interactions between Actin Isoforms and Nonsarcomeric Myosins
title_sort distinct functional interactions between actin isoforms and nonsarcomeric myosins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3724804/
https://www.ncbi.nlm.nih.gov/pubmed/23923011
http://dx.doi.org/10.1371/journal.pone.0070636
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