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The role of actin and microtubule networks in plasmid DNA intracellular trafficking
V. Ondrej, E. Lukasova, M. Falk, S. Kozubek
Jazyk angličtina Země Polsko
- MeSH
- aktiny fyziologie metabolismus MeSH
- bicyklické sloučeniny heterocyklické farmakologie MeSH
- biologický transport účinky léků MeSH
- cytochalasin D farmakologie MeSH
- DNA genetika metabolismus MeSH
- fibroblasty cytologie metabolismus účinky léků MeSH
- financování organizované MeSH
- imunoblotting MeSH
- kultivované buňky MeSH
- lidé MeSH
- mikrotubuly fyziologie metabolismus MeSH
- plazmidy genetika metabolismus MeSH
- rekombinantní fúzní proteiny genetika metabolismus MeSH
- thiazolidiny farmakologie MeSH
- transfekce MeSH
- vazba proteinů MeSH
- Check Tag
- lidé MeSH
This work is focused on the function of the microtubule and actin networks in plasmid DNA transport during liposomal transfection. We observed strong binding of plasmid DNA-lipid complexes (lipoplexes) to both networks and directional long-range motion of these lipoplexes along the microtubules. Disruption of either of these networks led to the cessation of plasmid transport to the nucleus, a decreased mobility of plasmids, and accumulation of plasmid DNA in large aggregates at the cell periphery. Our findings show an indispensable but different role of both types of cytoskeleton, actin and microtubular, in the processes of gene delivery.
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- $a Laboratory of Molecular Cytology and Cytometry, Institute of Biophysics, Academy of Sciences of the Czech Republic, Brno, Czech Republic. ondrej@ibp.cz
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- $a This work is focused on the function of the microtubule and actin networks in plasmid DNA transport during liposomal transfection. We observed strong binding of plasmid DNA-lipid complexes (lipoplexes) to both networks and directional long-range motion of these lipoplexes along the microtubules. Disruption of either of these networks led to the cessation of plasmid transport to the nucleus, a decreased mobility of plasmids, and accumulation of plasmid DNA in large aggregates at the cell periphery. Our findings show an indispensable but different role of both types of cytoskeleton, actin and microtubular, in the processes of gene delivery.
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