Cargando…

In Vivo Characterization of Dynein-Driven nanovectors Using Drosophila Oocytes

Molecular motors transport various cargoes including vesicles, proteins and mRNAs, to distinct intracellular compartments. A significant challenge in the field of nanotechnology is to improve drug nuclear delivery by engineering nanocarriers transported by cytoskeletal motors. However, suitable in v...

Descripción completa

Detalles Bibliográficos
Autores principales: Parassol, Nadège, Bienvenu, Céline, Boglio, Cécile, Fiorucci, Sébastien, Cerezo, Delphine, Yu, Xiao-Min, Godeau, Guilhem, Greiner, Jacques, Vierling, Pierre, Noselli, Stéphane, Di Giorgio, Christophe, Van De Bor, Véronique
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3861458/
https://www.ncbi.nlm.nih.gov/pubmed/24349395
http://dx.doi.org/10.1371/journal.pone.0082908
_version_ 1782295640761434112
author Parassol, Nadège
Bienvenu, Céline
Boglio, Cécile
Fiorucci, Sébastien
Cerezo, Delphine
Yu, Xiao-Min
Godeau, Guilhem
Greiner, Jacques
Vierling, Pierre
Noselli, Stéphane
Di Giorgio, Christophe
Van De Bor, Véronique
author_facet Parassol, Nadège
Bienvenu, Céline
Boglio, Cécile
Fiorucci, Sébastien
Cerezo, Delphine
Yu, Xiao-Min
Godeau, Guilhem
Greiner, Jacques
Vierling, Pierre
Noselli, Stéphane
Di Giorgio, Christophe
Van De Bor, Véronique
author_sort Parassol, Nadège
collection PubMed
description Molecular motors transport various cargoes including vesicles, proteins and mRNAs, to distinct intracellular compartments. A significant challenge in the field of nanotechnology is to improve drug nuclear delivery by engineering nanocarriers transported by cytoskeletal motors. However, suitable in vivo models to assay transport and delivery efficiency remain very limited. Here, we develop a fast and genetically tractable assay to test the efficiency and dynamics of fluospheres (FS) using microinjection into Drosophila oocytes coupled with time-lapse microscopy. We designed dynein motor driven FS using a collection of dynein light chain 8 (LC8) peptide binding motifs as molecular linkers and characterized in real time the efficiency of the FS movement according to its linker’s sequence. Results show that the conserved LC8 binding motif allows fast perinuclear nanoparticle's accumulation in a microtubule and dynein dependent mechanism. These data reveal the Drosophila oocyte as a new valuable tool for the design of motor driven nanovectors.
format Online
Article
Text
id pubmed-3861458
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-38614582013-12-17 In Vivo Characterization of Dynein-Driven nanovectors Using Drosophila Oocytes Parassol, Nadège Bienvenu, Céline Boglio, Cécile Fiorucci, Sébastien Cerezo, Delphine Yu, Xiao-Min Godeau, Guilhem Greiner, Jacques Vierling, Pierre Noselli, Stéphane Di Giorgio, Christophe Van De Bor, Véronique PLoS One Research Article Molecular motors transport various cargoes including vesicles, proteins and mRNAs, to distinct intracellular compartments. A significant challenge in the field of nanotechnology is to improve drug nuclear delivery by engineering nanocarriers transported by cytoskeletal motors. However, suitable in vivo models to assay transport and delivery efficiency remain very limited. Here, we develop a fast and genetically tractable assay to test the efficiency and dynamics of fluospheres (FS) using microinjection into Drosophila oocytes coupled with time-lapse microscopy. We designed dynein motor driven FS using a collection of dynein light chain 8 (LC8) peptide binding motifs as molecular linkers and characterized in real time the efficiency of the FS movement according to its linker’s sequence. Results show that the conserved LC8 binding motif allows fast perinuclear nanoparticle's accumulation in a microtubule and dynein dependent mechanism. These data reveal the Drosophila oocyte as a new valuable tool for the design of motor driven nanovectors. Public Library of Science 2013-12-12 /pmc/articles/PMC3861458/ /pubmed/24349395 http://dx.doi.org/10.1371/journal.pone.0082908 Text en © 2013 Parassol 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
Parassol, Nadège
Bienvenu, Céline
Boglio, Cécile
Fiorucci, Sébastien
Cerezo, Delphine
Yu, Xiao-Min
Godeau, Guilhem
Greiner, Jacques
Vierling, Pierre
Noselli, Stéphane
Di Giorgio, Christophe
Van De Bor, Véronique
In Vivo Characterization of Dynein-Driven nanovectors Using Drosophila Oocytes
title In Vivo Characterization of Dynein-Driven nanovectors Using Drosophila Oocytes
title_full In Vivo Characterization of Dynein-Driven nanovectors Using Drosophila Oocytes
title_fullStr In Vivo Characterization of Dynein-Driven nanovectors Using Drosophila Oocytes
title_full_unstemmed In Vivo Characterization of Dynein-Driven nanovectors Using Drosophila Oocytes
title_short In Vivo Characterization of Dynein-Driven nanovectors Using Drosophila Oocytes
title_sort in vivo characterization of dynein-driven nanovectors using drosophila oocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3861458/
https://www.ncbi.nlm.nih.gov/pubmed/24349395
http://dx.doi.org/10.1371/journal.pone.0082908
work_keys_str_mv AT parassolnadege invivocharacterizationofdyneindrivennanovectorsusingdrosophilaoocytes
AT bienvenuceline invivocharacterizationofdyneindrivennanovectorsusingdrosophilaoocytes
AT bogliocecile invivocharacterizationofdyneindrivennanovectorsusingdrosophilaoocytes
AT fioruccisebastien invivocharacterizationofdyneindrivennanovectorsusingdrosophilaoocytes
AT cerezodelphine invivocharacterizationofdyneindrivennanovectorsusingdrosophilaoocytes
AT yuxiaomin invivocharacterizationofdyneindrivennanovectorsusingdrosophilaoocytes
AT godeauguilhem invivocharacterizationofdyneindrivennanovectorsusingdrosophilaoocytes
AT greinerjacques invivocharacterizationofdyneindrivennanovectorsusingdrosophilaoocytes
AT vierlingpierre invivocharacterizationofdyneindrivennanovectorsusingdrosophilaoocytes
AT nosellistephane invivocharacterizationofdyneindrivennanovectorsusingdrosophilaoocytes
AT digiorgiochristophe invivocharacterizationofdyneindrivennanovectorsusingdrosophilaoocytes
AT vandeborveronique invivocharacterizationofdyneindrivennanovectorsusingdrosophilaoocytes