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Characterization of the Biochemical Properties and Biological Function of the Formin Homology Domains of Drosophila DAAM

We characterized the properties of Drosophila melanogaster DAAM-FH2 and DAAM-FH1-FH2 fragments and their interactions with actin and profilin by using various biophysical methods and in vivo experiments. The results show that although the DAAM-FH2 fragment does not have any conspicuous effect on act...

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Autores principales: Barkó, Szilvia, Bugyi, Beáta, Carlier, Marie-France, Gombos, Rita, Matusek, Tamás, Mihály, József, Nyitrai, Miklós
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2857102/
https://www.ncbi.nlm.nih.gov/pubmed/20177055
http://dx.doi.org/10.1074/jbc.M109.093914
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author Barkó, Szilvia
Bugyi, Beáta
Carlier, Marie-France
Gombos, Rita
Matusek, Tamás
Mihály, József
Nyitrai, Miklós
author_facet Barkó, Szilvia
Bugyi, Beáta
Carlier, Marie-France
Gombos, Rita
Matusek, Tamás
Mihály, József
Nyitrai, Miklós
author_sort Barkó, Szilvia
collection PubMed
description We characterized the properties of Drosophila melanogaster DAAM-FH2 and DAAM-FH1-FH2 fragments and their interactions with actin and profilin by using various biophysical methods and in vivo experiments. The results show that although the DAAM-FH2 fragment does not have any conspicuous effect on actin assembly in vivo, in cells expressing the DAAM-FH1-FH2 fragment, a profilin-dependent increase in the formation of actin structures is observed. The trachea-specific expression of DAAM-FH1-FH2 also induces phenotypic effects, leading to the collapse of the tracheal tube and lethality in the larval stages. In vitro, both DAAM fragments catalyze actin nucleation but severely decrease both the elongation and depolymerization rate of the filaments. Profilin acts as a molecular switch in DAAM function. DAAM-FH1-FH2, remaining bound to barbed ends, drives processive assembly of profilin-actin, whereas DAAM-FH2 forms an abortive complex with barbed ends that does not support profilin-actin assembly. Both DAAM fragments also bind to the sides of the actin filaments and induce actin bundling. These observations show that the D. melanogaster DAAM formin represents an extreme class of barbed end regulators gated by profilin.
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spelling pubmed-28571022010-04-22 Characterization of the Biochemical Properties and Biological Function of the Formin Homology Domains of Drosophila DAAM Barkó, Szilvia Bugyi, Beáta Carlier, Marie-France Gombos, Rita Matusek, Tamás Mihály, József Nyitrai, Miklós J Biol Chem Molecular Biophysics We characterized the properties of Drosophila melanogaster DAAM-FH2 and DAAM-FH1-FH2 fragments and their interactions with actin and profilin by using various biophysical methods and in vivo experiments. The results show that although the DAAM-FH2 fragment does not have any conspicuous effect on actin assembly in vivo, in cells expressing the DAAM-FH1-FH2 fragment, a profilin-dependent increase in the formation of actin structures is observed. The trachea-specific expression of DAAM-FH1-FH2 also induces phenotypic effects, leading to the collapse of the tracheal tube and lethality in the larval stages. In vitro, both DAAM fragments catalyze actin nucleation but severely decrease both the elongation and depolymerization rate of the filaments. Profilin acts as a molecular switch in DAAM function. DAAM-FH1-FH2, remaining bound to barbed ends, drives processive assembly of profilin-actin, whereas DAAM-FH2 forms an abortive complex with barbed ends that does not support profilin-actin assembly. Both DAAM fragments also bind to the sides of the actin filaments and induce actin bundling. These observations show that the D. melanogaster DAAM formin represents an extreme class of barbed end regulators gated by profilin. American Society for Biochemistry and Molecular Biology 2010-04-23 2010-02-21 /pmc/articles/PMC2857102/ /pubmed/20177055 http://dx.doi.org/10.1074/jbc.M109.093914 Text en © 2010 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Molecular Biophysics
Barkó, Szilvia
Bugyi, Beáta
Carlier, Marie-France
Gombos, Rita
Matusek, Tamás
Mihály, József
Nyitrai, Miklós
Characterization of the Biochemical Properties and Biological Function of the Formin Homology Domains of Drosophila DAAM
title Characterization of the Biochemical Properties and Biological Function of the Formin Homology Domains of Drosophila DAAM
title_full Characterization of the Biochemical Properties and Biological Function of the Formin Homology Domains of Drosophila DAAM
title_fullStr Characterization of the Biochemical Properties and Biological Function of the Formin Homology Domains of Drosophila DAAM
title_full_unstemmed Characterization of the Biochemical Properties and Biological Function of the Formin Homology Domains of Drosophila DAAM
title_short Characterization of the Biochemical Properties and Biological Function of the Formin Homology Domains of Drosophila DAAM
title_sort characterization of the biochemical properties and biological function of the formin homology domains of drosophila daam
topic Molecular Biophysics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2857102/
https://www.ncbi.nlm.nih.gov/pubmed/20177055
http://dx.doi.org/10.1074/jbc.M109.093914
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