Endocytosis of chikungunya virus into mammalian cells: role of clathrin and early endosomal compartments.

The replicative cycle of chikungunya virus (CHIKV), an alphavirus that recently re-emerged in India and in Indian Ocean area, remains mostly unknown. The aim of the present study was to investigate the intracellular trafficking pathway(s) hijacked by CHIKV to enter mammalian cells.Entry pathways wer...

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Main Authors: Eric Bernard, Maxime Solignat, Bernard Gay, Nathalie Chazal, Stephen Higgs, Christian Devaux, Laurence Briant
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-07-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2900206?pdf=render
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spelling doaj-8fa16ad82a8443f2bf3db9d8a6a38a9b2020-11-24T21:34:05ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-07-0157e1147910.1371/journal.pone.0011479Endocytosis of chikungunya virus into mammalian cells: role of clathrin and early endosomal compartments.Eric BernardMaxime SolignatBernard GayNathalie ChazalStephen HiggsChristian DevauxLaurence BriantThe replicative cycle of chikungunya virus (CHIKV), an alphavirus that recently re-emerged in India and in Indian Ocean area, remains mostly unknown. The aim of the present study was to investigate the intracellular trafficking pathway(s) hijacked by CHIKV to enter mammalian cells.Entry pathways were investigated using a variety of pharmacological inhibitors or overexpression of dominant negative forms of proteins perturbating cellular endocytosis. We found that CHIKV infection of HEK293T mammalian cells is independent of clathrin heavy chain and- dependent of functional Eps15, and requires integrity of Rab5-, but not Rab7-positive endosomal compartment. Cytoskeleton integrity is crucial as cytochalasin D and nocodazole significantly reduced infection of the cells. Finally, both methyl beta-cyclodextrin and lysomotropic agents impaired CHIKV infection, supporting that a cholesterol-, pH-dependent step is required to achieve productive infection. Interestingly, differential sensitivity to lysomotropic agents was observed between the prototypal 37997 African strain of CHIKV and the LR-OPY1 virus isolated from the recent outbreak in Reunion Island.Together our data indicate that CHIKV entry in its target cells is essentially mediated by clathrin-independent, Eps15-dependent endocytosis. Despite that this property is shared by the prototypal 37997 African strain of CHIKV and the LR-OPY1 virus isolated from the recent outbreak in La Réunion Island, differential sensitivity to lysomotropic agents may support that the LR-OPY1 strain has acquired specific entry mechanisms.http://europepmc.org/articles/PMC2900206?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Eric Bernard
Maxime Solignat
Bernard Gay
Nathalie Chazal
Stephen Higgs
Christian Devaux
Laurence Briant
spellingShingle Eric Bernard
Maxime Solignat
Bernard Gay
Nathalie Chazal
Stephen Higgs
Christian Devaux
Laurence Briant
Endocytosis of chikungunya virus into mammalian cells: role of clathrin and early endosomal compartments.
PLoS ONE
author_facet Eric Bernard
Maxime Solignat
Bernard Gay
Nathalie Chazal
Stephen Higgs
Christian Devaux
Laurence Briant
author_sort Eric Bernard
title Endocytosis of chikungunya virus into mammalian cells: role of clathrin and early endosomal compartments.
title_short Endocytosis of chikungunya virus into mammalian cells: role of clathrin and early endosomal compartments.
title_full Endocytosis of chikungunya virus into mammalian cells: role of clathrin and early endosomal compartments.
title_fullStr Endocytosis of chikungunya virus into mammalian cells: role of clathrin and early endosomal compartments.
title_full_unstemmed Endocytosis of chikungunya virus into mammalian cells: role of clathrin and early endosomal compartments.
title_sort endocytosis of chikungunya virus into mammalian cells: role of clathrin and early endosomal compartments.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-07-01
description The replicative cycle of chikungunya virus (CHIKV), an alphavirus that recently re-emerged in India and in Indian Ocean area, remains mostly unknown. The aim of the present study was to investigate the intracellular trafficking pathway(s) hijacked by CHIKV to enter mammalian cells.Entry pathways were investigated using a variety of pharmacological inhibitors or overexpression of dominant negative forms of proteins perturbating cellular endocytosis. We found that CHIKV infection of HEK293T mammalian cells is independent of clathrin heavy chain and- dependent of functional Eps15, and requires integrity of Rab5-, but not Rab7-positive endosomal compartment. Cytoskeleton integrity is crucial as cytochalasin D and nocodazole significantly reduced infection of the cells. Finally, both methyl beta-cyclodextrin and lysomotropic agents impaired CHIKV infection, supporting that a cholesterol-, pH-dependent step is required to achieve productive infection. Interestingly, differential sensitivity to lysomotropic agents was observed between the prototypal 37997 African strain of CHIKV and the LR-OPY1 virus isolated from the recent outbreak in Reunion Island.Together our data indicate that CHIKV entry in its target cells is essentially mediated by clathrin-independent, Eps15-dependent endocytosis. Despite that this property is shared by the prototypal 37997 African strain of CHIKV and the LR-OPY1 virus isolated from the recent outbreak in La Réunion Island, differential sensitivity to lysomotropic agents may support that the LR-OPY1 strain has acquired specific entry mechanisms.
url http://europepmc.org/articles/PMC2900206?pdf=render
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