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The Nuclear Pore Complex: A Target for NS3 Protease of Dengue and Zika Viruses

During flavivirus infection, some viral proteins move to the nucleus and cellular components are relocated from the nucleus to the cytoplasm. Thus, the integrity of the main regulator of the nuclear-cytoplasmic transport, the nuclear pore complex (NPC), was evaluated during infection with dengue vir...

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Autores principales: De Jesús-González, Luis Adrián, Cervantes-Salazar, Margot, Reyes-Ruiz, José Manuel, Osuna-Ramos, Juan Fidel, Farfán-Morales, Carlos Noe, Palacios-Rápalo, Selvin Noé, Pérez-Olais, José Humberto, Cordero-Rivera, Carlos Daniel, Hurtado-Monzón, Arianna M., Ruíz-Jiménez, Fernando, Gutiérrez-Escolano, Ana Lorena, del Ángel, Rosa María
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7354628/
https://www.ncbi.nlm.nih.gov/pubmed/32466480
http://dx.doi.org/10.3390/v12060583
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author De Jesús-González, Luis Adrián
Cervantes-Salazar, Margot
Reyes-Ruiz, José Manuel
Osuna-Ramos, Juan Fidel
Farfán-Morales, Carlos Noe
Palacios-Rápalo, Selvin Noé
Pérez-Olais, José Humberto
Cordero-Rivera, Carlos Daniel
Hurtado-Monzón, Arianna M.
Ruíz-Jiménez, Fernando
Gutiérrez-Escolano, Ana Lorena
del Ángel, Rosa María
author_facet De Jesús-González, Luis Adrián
Cervantes-Salazar, Margot
Reyes-Ruiz, José Manuel
Osuna-Ramos, Juan Fidel
Farfán-Morales, Carlos Noe
Palacios-Rápalo, Selvin Noé
Pérez-Olais, José Humberto
Cordero-Rivera, Carlos Daniel
Hurtado-Monzón, Arianna M.
Ruíz-Jiménez, Fernando
Gutiérrez-Escolano, Ana Lorena
del Ángel, Rosa María
author_sort De Jesús-González, Luis Adrián
collection PubMed
description During flavivirus infection, some viral proteins move to the nucleus and cellular components are relocated from the nucleus to the cytoplasm. Thus, the integrity of the main regulator of the nuclear-cytoplasmic transport, the nuclear pore complex (NPC), was evaluated during infection with dengue virus (DENV) and Zika virus (ZIKV). We found that while during DENV infection the integrity and distribution of at least three nucleoporins (Nup), Nup153, Nup98, and Nup62 were altered, during ZIKV infection, the integrity of TPR, Nup153, and Nup98 were modified. In this work, several lines of evidence indicate that the viral serine protease NS2B3 is involved in Nups cleavage. First, the serine protease inhibitors, TLCK and Leupeptin, prevented Nup98 and Nup62 cleavage. Second, the transfection of DENV and ZIKV NS2B3 protease was sufficient to inhibit the nuclear ring recognition detected in mock-infected cells with the Mab414 antibody. Third, the mutant but not the active (WT) protease was unable to cleave Nups in transfected cells. Thus, here we describe for the first time that the NS3 protein from flavivirus plays novel functions hijacking the nuclear pore complex, the main controller of the nuclear-cytoplasmic transport.
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spelling pubmed-73546282020-07-23 The Nuclear Pore Complex: A Target for NS3 Protease of Dengue and Zika Viruses De Jesús-González, Luis Adrián Cervantes-Salazar, Margot Reyes-Ruiz, José Manuel Osuna-Ramos, Juan Fidel Farfán-Morales, Carlos Noe Palacios-Rápalo, Selvin Noé Pérez-Olais, José Humberto Cordero-Rivera, Carlos Daniel Hurtado-Monzón, Arianna M. Ruíz-Jiménez, Fernando Gutiérrez-Escolano, Ana Lorena del Ángel, Rosa María Viruses Article During flavivirus infection, some viral proteins move to the nucleus and cellular components are relocated from the nucleus to the cytoplasm. Thus, the integrity of the main regulator of the nuclear-cytoplasmic transport, the nuclear pore complex (NPC), was evaluated during infection with dengue virus (DENV) and Zika virus (ZIKV). We found that while during DENV infection the integrity and distribution of at least three nucleoporins (Nup), Nup153, Nup98, and Nup62 were altered, during ZIKV infection, the integrity of TPR, Nup153, and Nup98 were modified. In this work, several lines of evidence indicate that the viral serine protease NS2B3 is involved in Nups cleavage. First, the serine protease inhibitors, TLCK and Leupeptin, prevented Nup98 and Nup62 cleavage. Second, the transfection of DENV and ZIKV NS2B3 protease was sufficient to inhibit the nuclear ring recognition detected in mock-infected cells with the Mab414 antibody. Third, the mutant but not the active (WT) protease was unable to cleave Nups in transfected cells. Thus, here we describe for the first time that the NS3 protein from flavivirus plays novel functions hijacking the nuclear pore complex, the main controller of the nuclear-cytoplasmic transport. MDPI 2020-05-26 /pmc/articles/PMC7354628/ /pubmed/32466480 http://dx.doi.org/10.3390/v12060583 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
De Jesús-González, Luis Adrián
Cervantes-Salazar, Margot
Reyes-Ruiz, José Manuel
Osuna-Ramos, Juan Fidel
Farfán-Morales, Carlos Noe
Palacios-Rápalo, Selvin Noé
Pérez-Olais, José Humberto
Cordero-Rivera, Carlos Daniel
Hurtado-Monzón, Arianna M.
Ruíz-Jiménez, Fernando
Gutiérrez-Escolano, Ana Lorena
del Ángel, Rosa María
The Nuclear Pore Complex: A Target for NS3 Protease of Dengue and Zika Viruses
title The Nuclear Pore Complex: A Target for NS3 Protease of Dengue and Zika Viruses
title_full The Nuclear Pore Complex: A Target for NS3 Protease of Dengue and Zika Viruses
title_fullStr The Nuclear Pore Complex: A Target for NS3 Protease of Dengue and Zika Viruses
title_full_unstemmed The Nuclear Pore Complex: A Target for NS3 Protease of Dengue and Zika Viruses
title_short The Nuclear Pore Complex: A Target for NS3 Protease of Dengue and Zika Viruses
title_sort nuclear pore complex: a target for ns3 protease of dengue and zika viruses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7354628/
https://www.ncbi.nlm.nih.gov/pubmed/32466480
http://dx.doi.org/10.3390/v12060583
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