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RhoA Regulates Peroxisome Association to Microtubules and the Actin Cytoskeleton

The current view of peroxisome inheritance provides for the formation of new peroxisomes by both budding from the endoplasmic reticulum and autonomous division. Here we investigate peroxisome-cytoskeleton interactions and show by proteomics, biochemical and immunofluorescence analyses that actin, no...

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Autores principales: Schollenberger, Lukas, Gronemeyer, Thomas, Huber, Christoph M., Lay, Dorothee, Wiese, Sebastian, Meyer, Helmut E., Warscheid, Bettina, Saffrich, Rainer, Peränen, Johan, Gorgas, Karin, Just, Wilhelm W.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2975642/
https://www.ncbi.nlm.nih.gov/pubmed/21079737
http://dx.doi.org/10.1371/journal.pone.0013886
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author Schollenberger, Lukas
Gronemeyer, Thomas
Huber, Christoph M.
Lay, Dorothee
Wiese, Sebastian
Meyer, Helmut E.
Warscheid, Bettina
Saffrich, Rainer
Peränen, Johan
Gorgas, Karin
Just, Wilhelm W.
author_facet Schollenberger, Lukas
Gronemeyer, Thomas
Huber, Christoph M.
Lay, Dorothee
Wiese, Sebastian
Meyer, Helmut E.
Warscheid, Bettina
Saffrich, Rainer
Peränen, Johan
Gorgas, Karin
Just, Wilhelm W.
author_sort Schollenberger, Lukas
collection PubMed
description The current view of peroxisome inheritance provides for the formation of new peroxisomes by both budding from the endoplasmic reticulum and autonomous division. Here we investigate peroxisome-cytoskeleton interactions and show by proteomics, biochemical and immunofluorescence analyses that actin, non-muscle myosin IIA (NMM IIA), RhoA, Rho kinase II (ROCKII) and Rab8 associate with peroxisomes. Our data provide evidence that (i) RhoA in its inactive state, maintained for example by C. botulinum toxin exoenzyme C3, dissociates from peroxisomes enabling microtubule-based peroxisomal movements and (ii) dominant-active RhoA targets to peroxisomes, uncouples the organelles from microtubules and favors Rho kinase recruitment to peroxisomes. We suggest that ROCKII activates NMM IIA mediating local peroxisomal constrictions. Although our understanding of peroxisome-cytoskeleton interactions is still incomplete, a picture is emerging demonstrating alternate RhoA-dependent association of peroxisomes to the microtubular and actin cytoskeleton. Whereas association of peroxisomes to microtubules clearly serves bidirectional, long-range saltatory movements, peroxisome-acto-myosin interactions may support biogenetic functions balancing peroxisome size, shape, number, and clustering.
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spelling pubmed-29756422010-11-15 RhoA Regulates Peroxisome Association to Microtubules and the Actin Cytoskeleton Schollenberger, Lukas Gronemeyer, Thomas Huber, Christoph M. Lay, Dorothee Wiese, Sebastian Meyer, Helmut E. Warscheid, Bettina Saffrich, Rainer Peränen, Johan Gorgas, Karin Just, Wilhelm W. PLoS One Research Article The current view of peroxisome inheritance provides for the formation of new peroxisomes by both budding from the endoplasmic reticulum and autonomous division. Here we investigate peroxisome-cytoskeleton interactions and show by proteomics, biochemical and immunofluorescence analyses that actin, non-muscle myosin IIA (NMM IIA), RhoA, Rho kinase II (ROCKII) and Rab8 associate with peroxisomes. Our data provide evidence that (i) RhoA in its inactive state, maintained for example by C. botulinum toxin exoenzyme C3, dissociates from peroxisomes enabling microtubule-based peroxisomal movements and (ii) dominant-active RhoA targets to peroxisomes, uncouples the organelles from microtubules and favors Rho kinase recruitment to peroxisomes. We suggest that ROCKII activates NMM IIA mediating local peroxisomal constrictions. Although our understanding of peroxisome-cytoskeleton interactions is still incomplete, a picture is emerging demonstrating alternate RhoA-dependent association of peroxisomes to the microtubular and actin cytoskeleton. Whereas association of peroxisomes to microtubules clearly serves bidirectional, long-range saltatory movements, peroxisome-acto-myosin interactions may support biogenetic functions balancing peroxisome size, shape, number, and clustering. Public Library of Science 2010-11-08 /pmc/articles/PMC2975642/ /pubmed/21079737 http://dx.doi.org/10.1371/journal.pone.0013886 Text en Schollenberger 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
Schollenberger, Lukas
Gronemeyer, Thomas
Huber, Christoph M.
Lay, Dorothee
Wiese, Sebastian
Meyer, Helmut E.
Warscheid, Bettina
Saffrich, Rainer
Peränen, Johan
Gorgas, Karin
Just, Wilhelm W.
RhoA Regulates Peroxisome Association to Microtubules and the Actin Cytoskeleton
title RhoA Regulates Peroxisome Association to Microtubules and the Actin Cytoskeleton
title_full RhoA Regulates Peroxisome Association to Microtubules and the Actin Cytoskeleton
title_fullStr RhoA Regulates Peroxisome Association to Microtubules and the Actin Cytoskeleton
title_full_unstemmed RhoA Regulates Peroxisome Association to Microtubules and the Actin Cytoskeleton
title_short RhoA Regulates Peroxisome Association to Microtubules and the Actin Cytoskeleton
title_sort rhoa regulates peroxisome association to microtubules and the actin cytoskeleton
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2975642/
https://www.ncbi.nlm.nih.gov/pubmed/21079737
http://dx.doi.org/10.1371/journal.pone.0013886
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