Cargando…

A Recombinant Fusion Toxin Based on Enzymatic Inactive C3bot1 Selectively Targets Macrophages

BACKGROUND: The C3bot1 protein (∼23 kDa) from Clostridium botulinum ADP-ribosylates and thereby inactivates Rho. C3bot1 is selectively taken up into the cytosol of monocytes/macrophages but not of other cell types such as epithelial cells or fibroblasts. Most likely, the internalization occurs by a...

Descripción completa

Detalles Bibliográficos
Autores principales: Dmochewitz, Lydia, Förtsch, Christina, Zwerger, Christian, Vaeth, Martin, Felder, Edward, Huber-Lang, Markus, Barth, Holger
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3549961/
https://www.ncbi.nlm.nih.gov/pubmed/23349915
http://dx.doi.org/10.1371/journal.pone.0054517
_version_ 1782256508764946432
author Dmochewitz, Lydia
Förtsch, Christina
Zwerger, Christian
Vaeth, Martin
Felder, Edward
Huber-Lang, Markus
Barth, Holger
author_facet Dmochewitz, Lydia
Förtsch, Christina
Zwerger, Christian
Vaeth, Martin
Felder, Edward
Huber-Lang, Markus
Barth, Holger
author_sort Dmochewitz, Lydia
collection PubMed
description BACKGROUND: The C3bot1 protein (∼23 kDa) from Clostridium botulinum ADP-ribosylates and thereby inactivates Rho. C3bot1 is selectively taken up into the cytosol of monocytes/macrophages but not of other cell types such as epithelial cells or fibroblasts. Most likely, the internalization occurs by a specific endocytotic pathway via acidified endosomes. METHODOLOGY/PRINCIPAL FINDINGS: Here, we tested whether enzymatic inactive C3bot1E174Q serves as a macrophage-selective transport system for delivery of enzymatic active proteins into the cytosol of such cells. Having confirmed that C3bot1E174Q does not induce macrophage activation, we used the actin ADP-ribosylating C2I (∼50 kDa) from Clostridium botulinum as a reporter enzyme for C3bot1E174Q-mediated delivery into macrophages. The recombinant C3bot1E174Q-C2I fusion toxin was cloned and expressed as GST-protein in Escherichia coli. Purified C3bot1E174Q-C2I was recognized by antibodies against C2I and C3bot and showed C2I-specific enzyme activity in vitro. When applied to cultured cells C3bot1E174Q-C2I ADP-ribosylated actin in the cytosol of macrophages including J774A.1 and RAW264.7 cell lines as well as primary cultured human macrophages but not of epithelial cells. Together with confocal fluorescence microscopy experiments, the biochemical data indicate the selective uptake of a recombinant C3-fusion toxin into the cytosol of macrophages. CONCLUSIONS/SIGNIFICANCE: In summary, we demonstrated that C3bot1E174Q can be used as a delivery system for fast, selective and specific transport of enzymes into the cytosol of living macrophages. Therefore, C3-based fusion toxins can represent valuable molecular tools in experimental macrophage pharmacology and cell biology as well as attractive candidates to develop new therapeutic approaches against macrophage-associated diseases.
format Online
Article
Text
id pubmed-3549961
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35499612013-01-24 A Recombinant Fusion Toxin Based on Enzymatic Inactive C3bot1 Selectively Targets Macrophages Dmochewitz, Lydia Förtsch, Christina Zwerger, Christian Vaeth, Martin Felder, Edward Huber-Lang, Markus Barth, Holger PLoS One Research Article BACKGROUND: The C3bot1 protein (∼23 kDa) from Clostridium botulinum ADP-ribosylates and thereby inactivates Rho. C3bot1 is selectively taken up into the cytosol of monocytes/macrophages but not of other cell types such as epithelial cells or fibroblasts. Most likely, the internalization occurs by a specific endocytotic pathway via acidified endosomes. METHODOLOGY/PRINCIPAL FINDINGS: Here, we tested whether enzymatic inactive C3bot1E174Q serves as a macrophage-selective transport system for delivery of enzymatic active proteins into the cytosol of such cells. Having confirmed that C3bot1E174Q does not induce macrophage activation, we used the actin ADP-ribosylating C2I (∼50 kDa) from Clostridium botulinum as a reporter enzyme for C3bot1E174Q-mediated delivery into macrophages. The recombinant C3bot1E174Q-C2I fusion toxin was cloned and expressed as GST-protein in Escherichia coli. Purified C3bot1E174Q-C2I was recognized by antibodies against C2I and C3bot and showed C2I-specific enzyme activity in vitro. When applied to cultured cells C3bot1E174Q-C2I ADP-ribosylated actin in the cytosol of macrophages including J774A.1 and RAW264.7 cell lines as well as primary cultured human macrophages but not of epithelial cells. Together with confocal fluorescence microscopy experiments, the biochemical data indicate the selective uptake of a recombinant C3-fusion toxin into the cytosol of macrophages. CONCLUSIONS/SIGNIFICANCE: In summary, we demonstrated that C3bot1E174Q can be used as a delivery system for fast, selective and specific transport of enzymes into the cytosol of living macrophages. Therefore, C3-based fusion toxins can represent valuable molecular tools in experimental macrophage pharmacology and cell biology as well as attractive candidates to develop new therapeutic approaches against macrophage-associated diseases. Public Library of Science 2013-01-21 /pmc/articles/PMC3549961/ /pubmed/23349915 http://dx.doi.org/10.1371/journal.pone.0054517 Text en © 2013 Dmochewitz 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
Dmochewitz, Lydia
Förtsch, Christina
Zwerger, Christian
Vaeth, Martin
Felder, Edward
Huber-Lang, Markus
Barth, Holger
A Recombinant Fusion Toxin Based on Enzymatic Inactive C3bot1 Selectively Targets Macrophages
title A Recombinant Fusion Toxin Based on Enzymatic Inactive C3bot1 Selectively Targets Macrophages
title_full A Recombinant Fusion Toxin Based on Enzymatic Inactive C3bot1 Selectively Targets Macrophages
title_fullStr A Recombinant Fusion Toxin Based on Enzymatic Inactive C3bot1 Selectively Targets Macrophages
title_full_unstemmed A Recombinant Fusion Toxin Based on Enzymatic Inactive C3bot1 Selectively Targets Macrophages
title_short A Recombinant Fusion Toxin Based on Enzymatic Inactive C3bot1 Selectively Targets Macrophages
title_sort recombinant fusion toxin based on enzymatic inactive c3bot1 selectively targets macrophages
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3549961/
https://www.ncbi.nlm.nih.gov/pubmed/23349915
http://dx.doi.org/10.1371/journal.pone.0054517
work_keys_str_mv AT dmochewitzlydia arecombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT fortschchristina arecombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT zwergerchristian arecombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT vaethmartin arecombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT felderedward arecombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT huberlangmarkus arecombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT barthholger arecombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT dmochewitzlydia recombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT fortschchristina recombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT zwergerchristian recombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT vaethmartin recombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT felderedward recombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT huberlangmarkus recombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages
AT barthholger recombinantfusiontoxinbasedonenzymaticinactivec3bot1selectivelytargetsmacrophages