Pyrimidine biosynthesis is not an essential function for Trypanosoma brucei bloodstream forms.

<h4>Background</h4>African trypanosomes are capable of both pyrimidine biosynthesis and salvage of preformed pyrimidines from the host, but it is unknown whether either process is essential to the parasite.<h4>Methodology/principal findings</h4>Pyrimidine requirements for gro...

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Main Authors: Juma A M Ali, Daniel N A Tagoe, Jane C Munday, Anne Donachie, Liam J Morrison, Harry P de Koning
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0058034
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author Juma A M Ali
Daniel N A Tagoe
Jane C Munday
Anne Donachie
Liam J Morrison
Harry P de Koning
author_facet Juma A M Ali
Daniel N A Tagoe
Jane C Munday
Anne Donachie
Liam J Morrison
Harry P de Koning
author_sort Juma A M Ali
collection DOAJ
description <h4>Background</h4>African trypanosomes are capable of both pyrimidine biosynthesis and salvage of preformed pyrimidines from the host, but it is unknown whether either process is essential to the parasite.<h4>Methodology/principal findings</h4>Pyrimidine requirements for growth were investigated using strictly pyrimidine-free media, with or without single added pyrimidine sources. Growth rates of wild-type bloodstream form Trypanosoma brucei brucei were unchanged in pyrimidine-free medium. The essentiality of the de novo pyrimidine biosynthesis pathway was studied by knocking out the PYR6-5 locus that produces a fusion product of orotate phosphoribosyltransferase (OPRT) and Orotidine Monophosphate Decarboxylase (OMPDCase). The pyrimidine auxotroph was dependent on a suitable extracellular pyrimidine source. Pyrimidine starvation was rapidly lethal and non-reversible, causing incomplete DNA content in new cells. The phenotype could be rescued by addition of uracil; supplementation with uridine, 2'deoxyuridine, and cytidine allowed a diminished growth rate and density. PYR6-5(-/-) trypanosomes were more sensitive to pyrimidine antimetabolites and displayed increased uracil transport rates and uridine phosphorylase activity. Pyrimidine auxotrophs were able to infect mice although the infection developed much more slowly than infection with the parental, prototrophic trypanosome line.<h4>Conclusions/significance</h4>Pyrimidine salvage was not an essential function for bloodstream T. b. brucei. However, trypanosomes lacking de novo pyrimidine biosynthesis are completely dependent on an extracellular pyrimidine source, strongly preferring uracil, and display reduced infectivity. As T. brucei are able to salvage sufficient pyrimidines from the host environment, the pyrimidine biosynthesis pathway is not a viable drug target, although any interruption of pyrimidine supply was lethal.
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spelling doaj-art-c48e4e5b6e5242f58b7c66d5b81009ce2025-08-20T03:10:20ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0183e5803410.1371/journal.pone.0058034Pyrimidine biosynthesis is not an essential function for Trypanosoma brucei bloodstream forms.Juma A M AliDaniel N A TagoeJane C MundayAnne DonachieLiam J MorrisonHarry P de Koning<h4>Background</h4>African trypanosomes are capable of both pyrimidine biosynthesis and salvage of preformed pyrimidines from the host, but it is unknown whether either process is essential to the parasite.<h4>Methodology/principal findings</h4>Pyrimidine requirements for growth were investigated using strictly pyrimidine-free media, with or without single added pyrimidine sources. Growth rates of wild-type bloodstream form Trypanosoma brucei brucei were unchanged in pyrimidine-free medium. The essentiality of the de novo pyrimidine biosynthesis pathway was studied by knocking out the PYR6-5 locus that produces a fusion product of orotate phosphoribosyltransferase (OPRT) and Orotidine Monophosphate Decarboxylase (OMPDCase). The pyrimidine auxotroph was dependent on a suitable extracellular pyrimidine source. Pyrimidine starvation was rapidly lethal and non-reversible, causing incomplete DNA content in new cells. The phenotype could be rescued by addition of uracil; supplementation with uridine, 2'deoxyuridine, and cytidine allowed a diminished growth rate and density. PYR6-5(-/-) trypanosomes were more sensitive to pyrimidine antimetabolites and displayed increased uracil transport rates and uridine phosphorylase activity. Pyrimidine auxotrophs were able to infect mice although the infection developed much more slowly than infection with the parental, prototrophic trypanosome line.<h4>Conclusions/significance</h4>Pyrimidine salvage was not an essential function for bloodstream T. b. brucei. However, trypanosomes lacking de novo pyrimidine biosynthesis are completely dependent on an extracellular pyrimidine source, strongly preferring uracil, and display reduced infectivity. As T. brucei are able to salvage sufficient pyrimidines from the host environment, the pyrimidine biosynthesis pathway is not a viable drug target, although any interruption of pyrimidine supply was lethal.https://doi.org/10.1371/journal.pone.0058034
spellingShingle Juma A M Ali
Daniel N A Tagoe
Jane C Munday
Anne Donachie
Liam J Morrison
Harry P de Koning
Pyrimidine biosynthesis is not an essential function for Trypanosoma brucei bloodstream forms.
PLoS ONE
title Pyrimidine biosynthesis is not an essential function for Trypanosoma brucei bloodstream forms.
title_full Pyrimidine biosynthesis is not an essential function for Trypanosoma brucei bloodstream forms.
title_fullStr Pyrimidine biosynthesis is not an essential function for Trypanosoma brucei bloodstream forms.
title_full_unstemmed Pyrimidine biosynthesis is not an essential function for Trypanosoma brucei bloodstream forms.
title_short Pyrimidine biosynthesis is not an essential function for Trypanosoma brucei bloodstream forms.
title_sort pyrimidine biosynthesis is not an essential function for trypanosoma brucei bloodstream forms
url https://doi.org/10.1371/journal.pone.0058034
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