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Molecular Interactions of the Copper Chaperone Atx1 of Paracoccidioides brasiliensis with Fungal Proteins Suggest a Crosstalk between Iron and Copper Homeostasis

Paracoccidioides spp. are endemic fungi from Latin America that cause Paracoccidioidomycosis, a systemic disease. These fungi present systems for high-affinity metal uptake, storage, and mobilization, which counteract host nutritional immunity and mitigate the toxic effects of metals. Regarding Cu m...

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Autores principales: de Carvalho Júnior, Marcos Antonio Batista, Silva, Lana O’Hara Souza, Pigosso, Laurine Lacerda, de Souza, Aparecido Ferreira, Lugo, Danize Eukales Menezes, Moraes, Dayane, Freitas e Silva, Kleber Santiago, Pereira, Maristela, Soares, Célia Maria de Almeida
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9963772/
https://www.ncbi.nlm.nih.gov/pubmed/36838213
http://dx.doi.org/10.3390/microorganisms11020248
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author de Carvalho Júnior, Marcos Antonio Batista
Silva, Lana O’Hara Souza
Pigosso, Laurine Lacerda
de Souza, Aparecido Ferreira
Lugo, Danize Eukales Menezes
Moraes, Dayane
Freitas e Silva, Kleber Santiago
Pereira, Maristela
Soares, Célia Maria de Almeida
author_facet de Carvalho Júnior, Marcos Antonio Batista
Silva, Lana O’Hara Souza
Pigosso, Laurine Lacerda
de Souza, Aparecido Ferreira
Lugo, Danize Eukales Menezes
Moraes, Dayane
Freitas e Silva, Kleber Santiago
Pereira, Maristela
Soares, Célia Maria de Almeida
author_sort de Carvalho Júnior, Marcos Antonio Batista
collection PubMed
description Paracoccidioides spp. are endemic fungi from Latin America that cause Paracoccidioidomycosis, a systemic disease. These fungi present systems for high-affinity metal uptake, storage, and mobilization, which counteract host nutritional immunity and mitigate the toxic effects of metals. Regarding Cu mobilization, the metallochaperone Atx1 is regulated according to Cu bioavailability in Paracoccidioides spp., contributing to metal homeostasis. However, additional information in the literature on PbAtx1 is scarce. Therefore, in the present work, we aimed to study the PbAtx1 protein–protein interaction networks. Heterologous expressed PbAtx1 was used in a pull-down assay with Paracoccidioides brasiliensis cytoplasmic extract. Nineteen proteins that interacted with PbAtx1 were identified by HPLC-MS(E). Among them, a relevant finding was a Cytochrome b(5) (PbCyb5), regulated by Fe bioavailability in Aspergillus fumigatus and highly secreted by P. brasiliensis in Fe deprivation. We validated the interaction between PbAtx1-PbCyb5 through molecular modeling and far-Western analyses. It is known that there is a relationship between Fe homeostasis and Cu homeostasis in organisms. In this sense, would PbAtx1-PbCyb5 interaction be a new metal-sensor system? Would it be supported by the presence/absence of metals? We intend to answer those questions in future works to contribute to the understanding of the strategies employed by Paracoccidioides spp. to overcome host defenses.
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spelling pubmed-99637722023-02-26 Molecular Interactions of the Copper Chaperone Atx1 of Paracoccidioides brasiliensis with Fungal Proteins Suggest a Crosstalk between Iron and Copper Homeostasis de Carvalho Júnior, Marcos Antonio Batista Silva, Lana O’Hara Souza Pigosso, Laurine Lacerda de Souza, Aparecido Ferreira Lugo, Danize Eukales Menezes Moraes, Dayane Freitas e Silva, Kleber Santiago Pereira, Maristela Soares, Célia Maria de Almeida Microorganisms Article Paracoccidioides spp. are endemic fungi from Latin America that cause Paracoccidioidomycosis, a systemic disease. These fungi present systems for high-affinity metal uptake, storage, and mobilization, which counteract host nutritional immunity and mitigate the toxic effects of metals. Regarding Cu mobilization, the metallochaperone Atx1 is regulated according to Cu bioavailability in Paracoccidioides spp., contributing to metal homeostasis. However, additional information in the literature on PbAtx1 is scarce. Therefore, in the present work, we aimed to study the PbAtx1 protein–protein interaction networks. Heterologous expressed PbAtx1 was used in a pull-down assay with Paracoccidioides brasiliensis cytoplasmic extract. Nineteen proteins that interacted with PbAtx1 were identified by HPLC-MS(E). Among them, a relevant finding was a Cytochrome b(5) (PbCyb5), regulated by Fe bioavailability in Aspergillus fumigatus and highly secreted by P. brasiliensis in Fe deprivation. We validated the interaction between PbAtx1-PbCyb5 through molecular modeling and far-Western analyses. It is known that there is a relationship between Fe homeostasis and Cu homeostasis in organisms. In this sense, would PbAtx1-PbCyb5 interaction be a new metal-sensor system? Would it be supported by the presence/absence of metals? We intend to answer those questions in future works to contribute to the understanding of the strategies employed by Paracoccidioides spp. to overcome host defenses. MDPI 2023-01-18 /pmc/articles/PMC9963772/ /pubmed/36838213 http://dx.doi.org/10.3390/microorganisms11020248 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
de Carvalho Júnior, Marcos Antonio Batista
Silva, Lana O’Hara Souza
Pigosso, Laurine Lacerda
de Souza, Aparecido Ferreira
Lugo, Danize Eukales Menezes
Moraes, Dayane
Freitas e Silva, Kleber Santiago
Pereira, Maristela
Soares, Célia Maria de Almeida
Molecular Interactions of the Copper Chaperone Atx1 of Paracoccidioides brasiliensis with Fungal Proteins Suggest a Crosstalk between Iron and Copper Homeostasis
title Molecular Interactions of the Copper Chaperone Atx1 of Paracoccidioides brasiliensis with Fungal Proteins Suggest a Crosstalk between Iron and Copper Homeostasis
title_full Molecular Interactions of the Copper Chaperone Atx1 of Paracoccidioides brasiliensis with Fungal Proteins Suggest a Crosstalk between Iron and Copper Homeostasis
title_fullStr Molecular Interactions of the Copper Chaperone Atx1 of Paracoccidioides brasiliensis with Fungal Proteins Suggest a Crosstalk between Iron and Copper Homeostasis
title_full_unstemmed Molecular Interactions of the Copper Chaperone Atx1 of Paracoccidioides brasiliensis with Fungal Proteins Suggest a Crosstalk between Iron and Copper Homeostasis
title_short Molecular Interactions of the Copper Chaperone Atx1 of Paracoccidioides brasiliensis with Fungal Proteins Suggest a Crosstalk between Iron and Copper Homeostasis
title_sort molecular interactions of the copper chaperone atx1 of paracoccidioides brasiliensis with fungal proteins suggest a crosstalk between iron and copper homeostasis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9963772/
https://www.ncbi.nlm.nih.gov/pubmed/36838213
http://dx.doi.org/10.3390/microorganisms11020248
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