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G2/M checkpoint regulation and apoptosis facilitate the nuclear egress of parvoviral capsids

The nuclear export factor CRM1-mediated pathway is known to be important for the nuclear egress of progeny parvovirus capsids in the host cells with virus-mediated cell cycle arrest at G2/M. However, it is still unclear whether this is the only pathway by which capsids exit the nucleus. Our studies...

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Autores principales: Mattola, Salla, Mäntylä, Elina, Aho, Vesa, Salminen, Sami, Leclerc, Simon, Oittinen, Mikko, Salokas, Kari, Järvensivu, Jani, Hakanen, Satu, Ihalainen, Teemu O, Viiri, Keijo, Vihinen-Ranta, Maija
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9773396/
https://www.ncbi.nlm.nih.gov/pubmed/36568985
http://dx.doi.org/10.3389/fcell.2022.1070599
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author Mattola, Salla
Mäntylä, Elina
Aho, Vesa
Salminen, Sami
Leclerc, Simon
Oittinen, Mikko
Salokas, Kari
Järvensivu, Jani
Hakanen, Satu
Ihalainen, Teemu O
Viiri, Keijo
Vihinen-Ranta, Maija
author_facet Mattola, Salla
Mäntylä, Elina
Aho, Vesa
Salminen, Sami
Leclerc, Simon
Oittinen, Mikko
Salokas, Kari
Järvensivu, Jani
Hakanen, Satu
Ihalainen, Teemu O
Viiri, Keijo
Vihinen-Ranta, Maija
author_sort Mattola, Salla
collection PubMed
description The nuclear export factor CRM1-mediated pathway is known to be important for the nuclear egress of progeny parvovirus capsids in the host cells with virus-mediated cell cycle arrest at G2/M. However, it is still unclear whether this is the only pathway by which capsids exit the nucleus. Our studies show that the nuclear egress of DNA-containing full canine parvovirus. capsids was reduced but not fully inhibited when CRM1-mediated nuclear export was prevented by leptomycin B. This suggests that canine parvovirus capsids might use additional routes for nuclear escape. This hypothesis was further supported by our findings that nuclear envelope (NE) permeability was increased at the late stages of infection. Inhibitors of cell cycle regulatory protein cyclin-dependent kinase 1 (Cdk1) and pro-apoptotic caspase 3 prevented the NE leakage. The change in NE permeability could be explained by the regulation of the G2/M checkpoint which is accompanied by early mitotic and apoptotic events. The model of G2/M checkpoint activation was supported by infection-induced nuclear accumulation of cyclin B1 and Cdk1. Both NE permeability and nuclear egress of capsids were reduced by the inhibition of Cdk1. Additional proof of checkpoint function regulation and promotion of apoptotic events was the nucleocytoplasmic redistribution of nuclear transport factors, importins, and Ran, in late infection. Consistent with our findings, post-translational histone acetylation that promotes the regulation of several genes related to cell cycle transition and arrest was detected. In conclusion, the model we propose implies that parvoviral capsid egress partially depends on infection-induced G2/M checkpoint regulation involving early mitotic and apoptotic events.
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spelling pubmed-97733962022-12-23 G2/M checkpoint regulation and apoptosis facilitate the nuclear egress of parvoviral capsids Mattola, Salla Mäntylä, Elina Aho, Vesa Salminen, Sami Leclerc, Simon Oittinen, Mikko Salokas, Kari Järvensivu, Jani Hakanen, Satu Ihalainen, Teemu O Viiri, Keijo Vihinen-Ranta, Maija Front Cell Dev Biol Cell and Developmental Biology The nuclear export factor CRM1-mediated pathway is known to be important for the nuclear egress of progeny parvovirus capsids in the host cells with virus-mediated cell cycle arrest at G2/M. However, it is still unclear whether this is the only pathway by which capsids exit the nucleus. Our studies show that the nuclear egress of DNA-containing full canine parvovirus. capsids was reduced but not fully inhibited when CRM1-mediated nuclear export was prevented by leptomycin B. This suggests that canine parvovirus capsids might use additional routes for nuclear escape. This hypothesis was further supported by our findings that nuclear envelope (NE) permeability was increased at the late stages of infection. Inhibitors of cell cycle regulatory protein cyclin-dependent kinase 1 (Cdk1) and pro-apoptotic caspase 3 prevented the NE leakage. The change in NE permeability could be explained by the regulation of the G2/M checkpoint which is accompanied by early mitotic and apoptotic events. The model of G2/M checkpoint activation was supported by infection-induced nuclear accumulation of cyclin B1 and Cdk1. Both NE permeability and nuclear egress of capsids were reduced by the inhibition of Cdk1. Additional proof of checkpoint function regulation and promotion of apoptotic events was the nucleocytoplasmic redistribution of nuclear transport factors, importins, and Ran, in late infection. Consistent with our findings, post-translational histone acetylation that promotes the regulation of several genes related to cell cycle transition and arrest was detected. In conclusion, the model we propose implies that parvoviral capsid egress partially depends on infection-induced G2/M checkpoint regulation involving early mitotic and apoptotic events. Frontiers Media S.A. 2022-12-08 /pmc/articles/PMC9773396/ /pubmed/36568985 http://dx.doi.org/10.3389/fcell.2022.1070599 Text en Copyright © 2022 Mattola, Mäntylä, Aho, Salminen, Leclerc, Oittinen, Salokas, Järvensivu, Hakanen, Ihalainen, Viiri and Vihinen-Ranta. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Mattola, Salla
Mäntylä, Elina
Aho, Vesa
Salminen, Sami
Leclerc, Simon
Oittinen, Mikko
Salokas, Kari
Järvensivu, Jani
Hakanen, Satu
Ihalainen, Teemu O
Viiri, Keijo
Vihinen-Ranta, Maija
G2/M checkpoint regulation and apoptosis facilitate the nuclear egress of parvoviral capsids
title G2/M checkpoint regulation and apoptosis facilitate the nuclear egress of parvoviral capsids
title_full G2/M checkpoint regulation and apoptosis facilitate the nuclear egress of parvoviral capsids
title_fullStr G2/M checkpoint regulation and apoptosis facilitate the nuclear egress of parvoviral capsids
title_full_unstemmed G2/M checkpoint regulation and apoptosis facilitate the nuclear egress of parvoviral capsids
title_short G2/M checkpoint regulation and apoptosis facilitate the nuclear egress of parvoviral capsids
title_sort g2/m checkpoint regulation and apoptosis facilitate the nuclear egress of parvoviral capsids
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9773396/
https://www.ncbi.nlm.nih.gov/pubmed/36568985
http://dx.doi.org/10.3389/fcell.2022.1070599
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