Cargando…

Structural features of Cryptococcus neoformans bifunctional GAR/AIR synthetase may present novel antifungal drug targets

Cryptococcus neoformans is a fungus that causes life-threatening systemic mycoses. During infection of the human host, this pathogen experiences a major change in the availability of purines; the fungus can scavenge the abundant purines in its environmental niche of pigeon excrement, but must employ...

Descripción completa

Detalles Bibliográficos
Autores principales: Chua, Sheena M.H., Wizrah, Maha S.I., Luo, Zhenyao, Lim, Bryan Y.J., Kappler, Ulrike, Kobe, Bostjan, Fraser, James A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8449271/
https://www.ncbi.nlm.nih.gov/pubmed/34416230
http://dx.doi.org/10.1016/j.jbc.2021.101091
_version_ 1784569397297283072
author Chua, Sheena M.H.
Wizrah, Maha S.I.
Luo, Zhenyao
Lim, Bryan Y.J.
Kappler, Ulrike
Kobe, Bostjan
Fraser, James A.
author_facet Chua, Sheena M.H.
Wizrah, Maha S.I.
Luo, Zhenyao
Lim, Bryan Y.J.
Kappler, Ulrike
Kobe, Bostjan
Fraser, James A.
author_sort Chua, Sheena M.H.
collection PubMed
description Cryptococcus neoformans is a fungus that causes life-threatening systemic mycoses. During infection of the human host, this pathogen experiences a major change in the availability of purines; the fungus can scavenge the abundant purines in its environmental niche of pigeon excrement, but must employ de novo biosynthesis in the purine-poor human CNS. Eleven sequential enzymatic steps are required to form the first purine base, IMP, an intermediate in the formation of ATP and GTP. Over the course of evolution, several gene fusion events led to the formation of multifunctional purine biosynthetic enzymes in most organisms, particularly the higher eukaryotes. In C. neoformans, phosphoribosyl-glycinamide synthetase (GARs) and phosphoribosyl-aminoimidazole synthetase (AIRs) are fused into a bifunctional enzyme, while the human ortholog is a trifunctional enzyme that also includes GAR transformylase. Here we functionally, biochemically, and structurally characterized C. neoformans GARs and AIRs to identify drug targetable features. GARs/AIRs are essential for de novo purine production and virulence in a murine inhalation infection model. Characterization of GARs enzymatic functional parameters showed that C. neoformans GARs/AIRs have lower affinity for substrates glycine and PRA compared with the trifunctional metazoan enzyme. The crystal structure of C. neoformans GARs revealed differences in the glycine- and ATP-binding sites compared with the Homo sapiens enzyme, while the crystal structure of AIRs shows high structural similarity compared with its H. sapiens ortholog as a monomer but differences as a dimer. The alterations in functional and structural characteristics between fungal and human enzymes could potentially be exploited for antifungal development.
format Online
Article
Text
id pubmed-8449271
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-84492712021-09-24 Structural features of Cryptococcus neoformans bifunctional GAR/AIR synthetase may present novel antifungal drug targets Chua, Sheena M.H. Wizrah, Maha S.I. Luo, Zhenyao Lim, Bryan Y.J. Kappler, Ulrike Kobe, Bostjan Fraser, James A. J Biol Chem Research Article Cryptococcus neoformans is a fungus that causes life-threatening systemic mycoses. During infection of the human host, this pathogen experiences a major change in the availability of purines; the fungus can scavenge the abundant purines in its environmental niche of pigeon excrement, but must employ de novo biosynthesis in the purine-poor human CNS. Eleven sequential enzymatic steps are required to form the first purine base, IMP, an intermediate in the formation of ATP and GTP. Over the course of evolution, several gene fusion events led to the formation of multifunctional purine biosynthetic enzymes in most organisms, particularly the higher eukaryotes. In C. neoformans, phosphoribosyl-glycinamide synthetase (GARs) and phosphoribosyl-aminoimidazole synthetase (AIRs) are fused into a bifunctional enzyme, while the human ortholog is a trifunctional enzyme that also includes GAR transformylase. Here we functionally, biochemically, and structurally characterized C. neoformans GARs and AIRs to identify drug targetable features. GARs/AIRs are essential for de novo purine production and virulence in a murine inhalation infection model. Characterization of GARs enzymatic functional parameters showed that C. neoformans GARs/AIRs have lower affinity for substrates glycine and PRA compared with the trifunctional metazoan enzyme. The crystal structure of C. neoformans GARs revealed differences in the glycine- and ATP-binding sites compared with the Homo sapiens enzyme, while the crystal structure of AIRs shows high structural similarity compared with its H. sapiens ortholog as a monomer but differences as a dimer. The alterations in functional and structural characteristics between fungal and human enzymes could potentially be exploited for antifungal development. American Society for Biochemistry and Molecular Biology 2021-08-17 /pmc/articles/PMC8449271/ /pubmed/34416230 http://dx.doi.org/10.1016/j.jbc.2021.101091 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Chua, Sheena M.H.
Wizrah, Maha S.I.
Luo, Zhenyao
Lim, Bryan Y.J.
Kappler, Ulrike
Kobe, Bostjan
Fraser, James A.
Structural features of Cryptococcus neoformans bifunctional GAR/AIR synthetase may present novel antifungal drug targets
title Structural features of Cryptococcus neoformans bifunctional GAR/AIR synthetase may present novel antifungal drug targets
title_full Structural features of Cryptococcus neoformans bifunctional GAR/AIR synthetase may present novel antifungal drug targets
title_fullStr Structural features of Cryptococcus neoformans bifunctional GAR/AIR synthetase may present novel antifungal drug targets
title_full_unstemmed Structural features of Cryptococcus neoformans bifunctional GAR/AIR synthetase may present novel antifungal drug targets
title_short Structural features of Cryptococcus neoformans bifunctional GAR/AIR synthetase may present novel antifungal drug targets
title_sort structural features of cryptococcus neoformans bifunctional gar/air synthetase may present novel antifungal drug targets
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8449271/
https://www.ncbi.nlm.nih.gov/pubmed/34416230
http://dx.doi.org/10.1016/j.jbc.2021.101091
work_keys_str_mv AT chuasheenamh structuralfeaturesofcryptococcusneoformansbifunctionalgarairsynthetasemaypresentnovelantifungaldrugtargets
AT wizrahmahasi structuralfeaturesofcryptococcusneoformansbifunctionalgarairsynthetasemaypresentnovelantifungaldrugtargets
AT luozhenyao structuralfeaturesofcryptococcusneoformansbifunctionalgarairsynthetasemaypresentnovelantifungaldrugtargets
AT limbryanyj structuralfeaturesofcryptococcusneoformansbifunctionalgarairsynthetasemaypresentnovelantifungaldrugtargets
AT kapplerulrike structuralfeaturesofcryptococcusneoformansbifunctionalgarairsynthetasemaypresentnovelantifungaldrugtargets
AT kobebostjan structuralfeaturesofcryptococcusneoformansbifunctionalgarairsynthetasemaypresentnovelantifungaldrugtargets
AT fraserjamesa structuralfeaturesofcryptococcusneoformansbifunctionalgarairsynthetasemaypresentnovelantifungaldrugtargets