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Structural features and development of an assay platform of the parasite target deoxyhypusine synthase of Brugia malayi and Leishmania major

Deoxyhypusine synthase (DHS) catalyzes the first step of the post-translational modification of eukaryotic translation factor 5A (eIF5A), which is the only known protein containing the amino acid hypusine. Both proteins are essential for eukaryotic cell viability, and DHS has been suggested as a goo...

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Autores principales: Silva, Suélen Fernandes, Klippel, Angélica Hollunder, Ramos, Priscila Zonzini, Santiago, André da Silva, Valentini, Sandro Roberto, Bengtson, Mario Henrique, Massirer, Katlin Brauer, Bilsland, Elizabeth, Couñago, Rafael Miguez, Zanelli, Cleslei Fernando
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7581365/
https://www.ncbi.nlm.nih.gov/pubmed/33044977
http://dx.doi.org/10.1371/journal.pntd.0008762
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author Silva, Suélen Fernandes
Klippel, Angélica Hollunder
Ramos, Priscila Zonzini
Santiago, André da Silva
Valentini, Sandro Roberto
Bengtson, Mario Henrique
Massirer, Katlin Brauer
Bilsland, Elizabeth
Couñago, Rafael Miguez
Zanelli, Cleslei Fernando
author_facet Silva, Suélen Fernandes
Klippel, Angélica Hollunder
Ramos, Priscila Zonzini
Santiago, André da Silva
Valentini, Sandro Roberto
Bengtson, Mario Henrique
Massirer, Katlin Brauer
Bilsland, Elizabeth
Couñago, Rafael Miguez
Zanelli, Cleslei Fernando
author_sort Silva, Suélen Fernandes
collection PubMed
description Deoxyhypusine synthase (DHS) catalyzes the first step of the post-translational modification of eukaryotic translation factor 5A (eIF5A), which is the only known protein containing the amino acid hypusine. Both proteins are essential for eukaryotic cell viability, and DHS has been suggested as a good candidate target for small molecule-based therapies against eukaryotic pathogens. In this work, we focused on the DHS enzymes from Brugia malayi and Leishmania major, the causative agents of lymphatic filariasis and cutaneous leishmaniasis, respectively. To enable B. malayi (Bm)DHS for future target-based drug discovery programs, we determined its crystal structure bound to cofactor NAD(+). We also reported an in vitro biochemical assay for this enzyme that is amenable to a high-throughput screening format. The L. major genome encodes two DHS paralogs, and attempts to produce them recombinantly in bacterial cells were not successful. Nevertheless, we showed that ectopic expression of both LmDHS paralogs can rescue yeast cells lacking the endogenous DHS-encoding gene (dys1). Thus, functionally complemented dys1Δ yeast mutants can be used to screen for new inhibitors of the L. major enzyme. We used the known human DHS inhibitor GC7 to validate both in vitro and yeast-based DHS assays. Our results show that BmDHS is a homotetrameric enzyme that shares many features with its human homologue, whereas LmDHS paralogs are likely to form a heterotetrameric complex and have a distinct regulatory mechanism. We expect our work to facilitate the identification and development of new DHS inhibitors that can be used to validate these enzymes as vulnerable targets for therapeutic interventions against B. malayi and L. major infections.
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spelling pubmed-75813652020-10-27 Structural features and development of an assay platform of the parasite target deoxyhypusine synthase of Brugia malayi and Leishmania major Silva, Suélen Fernandes Klippel, Angélica Hollunder Ramos, Priscila Zonzini Santiago, André da Silva Valentini, Sandro Roberto Bengtson, Mario Henrique Massirer, Katlin Brauer Bilsland, Elizabeth Couñago, Rafael Miguez Zanelli, Cleslei Fernando PLoS Negl Trop Dis Research Article Deoxyhypusine synthase (DHS) catalyzes the first step of the post-translational modification of eukaryotic translation factor 5A (eIF5A), which is the only known protein containing the amino acid hypusine. Both proteins are essential for eukaryotic cell viability, and DHS has been suggested as a good candidate target for small molecule-based therapies against eukaryotic pathogens. In this work, we focused on the DHS enzymes from Brugia malayi and Leishmania major, the causative agents of lymphatic filariasis and cutaneous leishmaniasis, respectively. To enable B. malayi (Bm)DHS for future target-based drug discovery programs, we determined its crystal structure bound to cofactor NAD(+). We also reported an in vitro biochemical assay for this enzyme that is amenable to a high-throughput screening format. The L. major genome encodes two DHS paralogs, and attempts to produce them recombinantly in bacterial cells were not successful. Nevertheless, we showed that ectopic expression of both LmDHS paralogs can rescue yeast cells lacking the endogenous DHS-encoding gene (dys1). Thus, functionally complemented dys1Δ yeast mutants can be used to screen for new inhibitors of the L. major enzyme. We used the known human DHS inhibitor GC7 to validate both in vitro and yeast-based DHS assays. Our results show that BmDHS is a homotetrameric enzyme that shares many features with its human homologue, whereas LmDHS paralogs are likely to form a heterotetrameric complex and have a distinct regulatory mechanism. We expect our work to facilitate the identification and development of new DHS inhibitors that can be used to validate these enzymes as vulnerable targets for therapeutic interventions against B. malayi and L. major infections. Public Library of Science 2020-10-12 /pmc/articles/PMC7581365/ /pubmed/33044977 http://dx.doi.org/10.1371/journal.pntd.0008762 Text en © 2020 Silva 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Silva, Suélen Fernandes
Klippel, Angélica Hollunder
Ramos, Priscila Zonzini
Santiago, André da Silva
Valentini, Sandro Roberto
Bengtson, Mario Henrique
Massirer, Katlin Brauer
Bilsland, Elizabeth
Couñago, Rafael Miguez
Zanelli, Cleslei Fernando
Structural features and development of an assay platform of the parasite target deoxyhypusine synthase of Brugia malayi and Leishmania major
title Structural features and development of an assay platform of the parasite target deoxyhypusine synthase of Brugia malayi and Leishmania major
title_full Structural features and development of an assay platform of the parasite target deoxyhypusine synthase of Brugia malayi and Leishmania major
title_fullStr Structural features and development of an assay platform of the parasite target deoxyhypusine synthase of Brugia malayi and Leishmania major
title_full_unstemmed Structural features and development of an assay platform of the parasite target deoxyhypusine synthase of Brugia malayi and Leishmania major
title_short Structural features and development of an assay platform of the parasite target deoxyhypusine synthase of Brugia malayi and Leishmania major
title_sort structural features and development of an assay platform of the parasite target deoxyhypusine synthase of brugia malayi and leishmania major
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7581365/
https://www.ncbi.nlm.nih.gov/pubmed/33044977
http://dx.doi.org/10.1371/journal.pntd.0008762
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