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The Dengue Vector Aedes aegypti Contains a Functional High Mobility Group Box 1 (HMGB1) Protein with a Unique Regulatory C-Terminus

The mosquito Aedes aegypti can spread the dengue, chikungunya and yellow fever viruses. Thus, the search for key molecules involved in the mosquito survival represents today a promising vector control strategy. High Mobility Group Box (HMGB) proteins are essential nuclear factors that maintain the h...

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Autores principales: Ribeiro, Fabio Schneider, de Abreu da Silva, Isabel Caetano, Carneiro, Vitor Coutinho, Belgrano, Fabrício dos Santos, Mohana-Borges, Ronaldo, de Andrade Rosa, Ivone, Benchimol, Marlene, Souza, Nathalia Rocha Quintino, Mesquita, Rafael Dias, Sorgine, Marcos Henrique Ferreira, Gazos-Lopes, Felipe, Vicentino, Amanda Roberta Revoredo, Wu, Wenjie, de Moraes Maciel, Renata, da Silva-Neto, Mario Alberto Cardoso, Fantappié, Marcelo Rosado
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3388995/
https://www.ncbi.nlm.nih.gov/pubmed/22802955
http://dx.doi.org/10.1371/journal.pone.0040192
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author Ribeiro, Fabio Schneider
de Abreu da Silva, Isabel Caetano
Carneiro, Vitor Coutinho
Belgrano, Fabrício dos Santos
Mohana-Borges, Ronaldo
de Andrade Rosa, Ivone
Benchimol, Marlene
Souza, Nathalia Rocha Quintino
Mesquita, Rafael Dias
Sorgine, Marcos Henrique Ferreira
Gazos-Lopes, Felipe
Vicentino, Amanda Roberta Revoredo
Wu, Wenjie
de Moraes Maciel, Renata
da Silva-Neto, Mario Alberto Cardoso
Fantappié, Marcelo Rosado
author_facet Ribeiro, Fabio Schneider
de Abreu da Silva, Isabel Caetano
Carneiro, Vitor Coutinho
Belgrano, Fabrício dos Santos
Mohana-Borges, Ronaldo
de Andrade Rosa, Ivone
Benchimol, Marlene
Souza, Nathalia Rocha Quintino
Mesquita, Rafael Dias
Sorgine, Marcos Henrique Ferreira
Gazos-Lopes, Felipe
Vicentino, Amanda Roberta Revoredo
Wu, Wenjie
de Moraes Maciel, Renata
da Silva-Neto, Mario Alberto Cardoso
Fantappié, Marcelo Rosado
author_sort Ribeiro, Fabio Schneider
collection PubMed
description The mosquito Aedes aegypti can spread the dengue, chikungunya and yellow fever viruses. Thus, the search for key molecules involved in the mosquito survival represents today a promising vector control strategy. High Mobility Group Box (HMGB) proteins are essential nuclear factors that maintain the high-order structure of chromatin, keeping eukaryotic cells viable. Outside the nucleus, secreted HMGB proteins could alert the innate immune system to foreign antigens and trigger the initiation of host defenses. In this work, we cloned and functionally characterized the HMGB1 protein from Aedes aegypti (AaHMGB1). The AaHMGB1 protein typically consists of two HMG-box DNA binding domains and an acidic C-terminus. Interestingly, AaHMGB1 contains a unique alanine/glutamine-rich (AQ-rich) C-terminal region that seems to be exclusive of dipteran HMGB proteins. AaHMGB1 is localized to the cell nucleus, mainly associated with heterochromatin. Circular dichroism analyses of AaHMGB1 or the C-terminal truncated proteins revealed α-helical structures. We showed that AaHMGB1 can effectively bind and change the topology of DNA, and that the AQ-rich and the C-terminal acidic regions can modulate its ability to promote DNA supercoiling, as well as its preference to bind supercoiled DNA. AaHMGB1 is phosphorylated by PKA and PKC, but not by CK2. Importantly, phosphorylation of AaHMGB1 by PKA or PKC completely abolishes its DNA bending activity. Thus, our study shows that a functional HMGB1 protein occurs in Aedes aegypt and we provide the first description of a HMGB1 protein containing an AQ-rich regulatory C-terminus.
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spelling pubmed-33889952012-07-16 The Dengue Vector Aedes aegypti Contains a Functional High Mobility Group Box 1 (HMGB1) Protein with a Unique Regulatory C-Terminus Ribeiro, Fabio Schneider de Abreu da Silva, Isabel Caetano Carneiro, Vitor Coutinho Belgrano, Fabrício dos Santos Mohana-Borges, Ronaldo de Andrade Rosa, Ivone Benchimol, Marlene Souza, Nathalia Rocha Quintino Mesquita, Rafael Dias Sorgine, Marcos Henrique Ferreira Gazos-Lopes, Felipe Vicentino, Amanda Roberta Revoredo Wu, Wenjie de Moraes Maciel, Renata da Silva-Neto, Mario Alberto Cardoso Fantappié, Marcelo Rosado PLoS One Research Article The mosquito Aedes aegypti can spread the dengue, chikungunya and yellow fever viruses. Thus, the search for key molecules involved in the mosquito survival represents today a promising vector control strategy. High Mobility Group Box (HMGB) proteins are essential nuclear factors that maintain the high-order structure of chromatin, keeping eukaryotic cells viable. Outside the nucleus, secreted HMGB proteins could alert the innate immune system to foreign antigens and trigger the initiation of host defenses. In this work, we cloned and functionally characterized the HMGB1 protein from Aedes aegypti (AaHMGB1). The AaHMGB1 protein typically consists of two HMG-box DNA binding domains and an acidic C-terminus. Interestingly, AaHMGB1 contains a unique alanine/glutamine-rich (AQ-rich) C-terminal region that seems to be exclusive of dipteran HMGB proteins. AaHMGB1 is localized to the cell nucleus, mainly associated with heterochromatin. Circular dichroism analyses of AaHMGB1 or the C-terminal truncated proteins revealed α-helical structures. We showed that AaHMGB1 can effectively bind and change the topology of DNA, and that the AQ-rich and the C-terminal acidic regions can modulate its ability to promote DNA supercoiling, as well as its preference to bind supercoiled DNA. AaHMGB1 is phosphorylated by PKA and PKC, but not by CK2. Importantly, phosphorylation of AaHMGB1 by PKA or PKC completely abolishes its DNA bending activity. Thus, our study shows that a functional HMGB1 protein occurs in Aedes aegypt and we provide the first description of a HMGB1 protein containing an AQ-rich regulatory C-terminus. Public Library of Science 2012-07-03 /pmc/articles/PMC3388995/ /pubmed/22802955 http://dx.doi.org/10.1371/journal.pone.0040192 Text en Ribeiro 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
Ribeiro, Fabio Schneider
de Abreu da Silva, Isabel Caetano
Carneiro, Vitor Coutinho
Belgrano, Fabrício dos Santos
Mohana-Borges, Ronaldo
de Andrade Rosa, Ivone
Benchimol, Marlene
Souza, Nathalia Rocha Quintino
Mesquita, Rafael Dias
Sorgine, Marcos Henrique Ferreira
Gazos-Lopes, Felipe
Vicentino, Amanda Roberta Revoredo
Wu, Wenjie
de Moraes Maciel, Renata
da Silva-Neto, Mario Alberto Cardoso
Fantappié, Marcelo Rosado
The Dengue Vector Aedes aegypti Contains a Functional High Mobility Group Box 1 (HMGB1) Protein with a Unique Regulatory C-Terminus
title The Dengue Vector Aedes aegypti Contains a Functional High Mobility Group Box 1 (HMGB1) Protein with a Unique Regulatory C-Terminus
title_full The Dengue Vector Aedes aegypti Contains a Functional High Mobility Group Box 1 (HMGB1) Protein with a Unique Regulatory C-Terminus
title_fullStr The Dengue Vector Aedes aegypti Contains a Functional High Mobility Group Box 1 (HMGB1) Protein with a Unique Regulatory C-Terminus
title_full_unstemmed The Dengue Vector Aedes aegypti Contains a Functional High Mobility Group Box 1 (HMGB1) Protein with a Unique Regulatory C-Terminus
title_short The Dengue Vector Aedes aegypti Contains a Functional High Mobility Group Box 1 (HMGB1) Protein with a Unique Regulatory C-Terminus
title_sort dengue vector aedes aegypti contains a functional high mobility group box 1 (hmgb1) protein with a unique regulatory c-terminus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3388995/
https://www.ncbi.nlm.nih.gov/pubmed/22802955
http://dx.doi.org/10.1371/journal.pone.0040192
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