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Clathrin-Independent Entry of Baculovirus Triggers Uptake of E. coli in Non-Phagocytic Human Cells

The prototype baculovirus, Autographa californica multiple nucleopolyhedrovirus, an insect pathogen, holds great potential as a gene therapy vector. To develop transductional targeting and gene delivery by baculovirus, we focused on characterizing the nature and regulation of its uptake in human can...

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Autores principales: Laakkonen, Johanna P., Mäkelä, Anna R., Kakkonen, Elina, Turkki, Paula, Kukkonen, Sari, Peränen, Johan, Ylä-Herttuala, Seppo, Airenne, Kari J., Oker-Blom, Christian, Vihinen-Ranta, Maija, Marjomäki, Varpu
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2662421/
https://www.ncbi.nlm.nih.gov/pubmed/19352496
http://dx.doi.org/10.1371/journal.pone.0005093
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author Laakkonen, Johanna P.
Mäkelä, Anna R.
Kakkonen, Elina
Turkki, Paula
Kukkonen, Sari
Peränen, Johan
Ylä-Herttuala, Seppo
Airenne, Kari J.
Oker-Blom, Christian
Vihinen-Ranta, Maija
Marjomäki, Varpu
author_facet Laakkonen, Johanna P.
Mäkelä, Anna R.
Kakkonen, Elina
Turkki, Paula
Kukkonen, Sari
Peränen, Johan
Ylä-Herttuala, Seppo
Airenne, Kari J.
Oker-Blom, Christian
Vihinen-Ranta, Maija
Marjomäki, Varpu
author_sort Laakkonen, Johanna P.
collection PubMed
description The prototype baculovirus, Autographa californica multiple nucleopolyhedrovirus, an insect pathogen, holds great potential as a gene therapy vector. To develop transductional targeting and gene delivery by baculovirus, we focused on characterizing the nature and regulation of its uptake in human cancer cells. Baculovirus entered the cells along fluid-phase markers from the raft areas into smooth-surfaced vesicles devoid of clathrin. Notably, regulators associated with macropinocytosis, namely EIPA, Pak1, Rab34, and Rac1, had no significant effect on viral transduction, and the virus did not induce fluid-phase uptake. The internalization and nuclear uptake was, however, affected by mutants of RhoA, and of Arf6, a regulator of clathrin-independent entry. Furthermore, the entry of baculovirus induced ruffle formation and triggered the uptake of fluorescent E. coli bioparticles. To conclude, baculovirus enters human cells via a clathrin-independent pathway, which is able to trigger bacterial uptake. This study increases our understanding of virus entry strategies and gives new insight into baculovirus-mediated gene delivery in human cells.
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spelling pubmed-26624212009-04-08 Clathrin-Independent Entry of Baculovirus Triggers Uptake of E. coli in Non-Phagocytic Human Cells Laakkonen, Johanna P. Mäkelä, Anna R. Kakkonen, Elina Turkki, Paula Kukkonen, Sari Peränen, Johan Ylä-Herttuala, Seppo Airenne, Kari J. Oker-Blom, Christian Vihinen-Ranta, Maija Marjomäki, Varpu PLoS One Research Article The prototype baculovirus, Autographa californica multiple nucleopolyhedrovirus, an insect pathogen, holds great potential as a gene therapy vector. To develop transductional targeting and gene delivery by baculovirus, we focused on characterizing the nature and regulation of its uptake in human cancer cells. Baculovirus entered the cells along fluid-phase markers from the raft areas into smooth-surfaced vesicles devoid of clathrin. Notably, regulators associated with macropinocytosis, namely EIPA, Pak1, Rab34, and Rac1, had no significant effect on viral transduction, and the virus did not induce fluid-phase uptake. The internalization and nuclear uptake was, however, affected by mutants of RhoA, and of Arf6, a regulator of clathrin-independent entry. Furthermore, the entry of baculovirus induced ruffle formation and triggered the uptake of fluorescent E. coli bioparticles. To conclude, baculovirus enters human cells via a clathrin-independent pathway, which is able to trigger bacterial uptake. This study increases our understanding of virus entry strategies and gives new insight into baculovirus-mediated gene delivery in human cells. Public Library of Science 2009-04-07 /pmc/articles/PMC2662421/ /pubmed/19352496 http://dx.doi.org/10.1371/journal.pone.0005093 Text en Laakkonen 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
Laakkonen, Johanna P.
Mäkelä, Anna R.
Kakkonen, Elina
Turkki, Paula
Kukkonen, Sari
Peränen, Johan
Ylä-Herttuala, Seppo
Airenne, Kari J.
Oker-Blom, Christian
Vihinen-Ranta, Maija
Marjomäki, Varpu
Clathrin-Independent Entry of Baculovirus Triggers Uptake of E. coli in Non-Phagocytic Human Cells
title Clathrin-Independent Entry of Baculovirus Triggers Uptake of E. coli in Non-Phagocytic Human Cells
title_full Clathrin-Independent Entry of Baculovirus Triggers Uptake of E. coli in Non-Phagocytic Human Cells
title_fullStr Clathrin-Independent Entry of Baculovirus Triggers Uptake of E. coli in Non-Phagocytic Human Cells
title_full_unstemmed Clathrin-Independent Entry of Baculovirus Triggers Uptake of E. coli in Non-Phagocytic Human Cells
title_short Clathrin-Independent Entry of Baculovirus Triggers Uptake of E. coli in Non-Phagocytic Human Cells
title_sort clathrin-independent entry of baculovirus triggers uptake of e. coli in non-phagocytic human cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2662421/
https://www.ncbi.nlm.nih.gov/pubmed/19352496
http://dx.doi.org/10.1371/journal.pone.0005093
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