Perturbations in histidine biosynthesis uncover robustness in the metabolic network of Salmonella enterica.

Phosphoribosylamine (PRA) is an intermediate in the biosynthetic pathway that is common to thiamine and purines. Glutamine phosphoribosyl pyrophosphate (PRPP) amidotransferase is the product of the purF gene in Salmonella enterica and catalyzes the synthesis of PRA from PRPP and glutamine. Strains l...

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Main Authors: Mark J Koenigsknecht, Jennifer A Lambrecht, Luke A Fenlon, Diana M Downs
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3485032?pdf=render
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spelling doaj-a972b7709fdb4c97b639dd1d9a8bdc442020-11-24T21:52:01ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01710e4820710.1371/journal.pone.0048207Perturbations in histidine biosynthesis uncover robustness in the metabolic network of Salmonella enterica.Mark J KoenigsknechtJennifer A LambrechtLuke A FenlonDiana M DownsPhosphoribosylamine (PRA) is an intermediate in the biosynthetic pathway that is common to thiamine and purines. Glutamine phosphoribosyl pyrophosphate (PRPP) amidotransferase is the product of the purF gene in Salmonella enterica and catalyzes the synthesis of PRA from PRPP and glutamine. Strains lacking PurF require exogenous addition of purines for growth. However, under some growth conditions or with specific secondary mutations these strains grow in the absence of exogenous thiamine. Mutant alleles of hisA, which encodes 1-(5-phosphoribosyl)-5-[(5-phosphoribosylamino) methylideneamino] imidazole-4-carboxamide (ProFAR) isomerase, allowed PurF-independent PRA formation. The alleles of hisA that suppressed the requirement for exogenous thiamine resulted in proteins with reduced enzymatic activity. Data presented here showed that decreased activity of HisA altered metabolite pools and allowed PRA formation from ProFAR. Possible mechanisms of this conversion were proposed. The results herein emphasize the plasticity of the metabolic network and specifically highlight the potential for chemical syntheses to contribute to network robustness.http://europepmc.org/articles/PMC3485032?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Mark J Koenigsknecht
Jennifer A Lambrecht
Luke A Fenlon
Diana M Downs
spellingShingle Mark J Koenigsknecht
Jennifer A Lambrecht
Luke A Fenlon
Diana M Downs
Perturbations in histidine biosynthesis uncover robustness in the metabolic network of Salmonella enterica.
PLoS ONE
author_facet Mark J Koenigsknecht
Jennifer A Lambrecht
Luke A Fenlon
Diana M Downs
author_sort Mark J Koenigsknecht
title Perturbations in histidine biosynthesis uncover robustness in the metabolic network of Salmonella enterica.
title_short Perturbations in histidine biosynthesis uncover robustness in the metabolic network of Salmonella enterica.
title_full Perturbations in histidine biosynthesis uncover robustness in the metabolic network of Salmonella enterica.
title_fullStr Perturbations in histidine biosynthesis uncover robustness in the metabolic network of Salmonella enterica.
title_full_unstemmed Perturbations in histidine biosynthesis uncover robustness in the metabolic network of Salmonella enterica.
title_sort perturbations in histidine biosynthesis uncover robustness in the metabolic network of salmonella enterica.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Phosphoribosylamine (PRA) is an intermediate in the biosynthetic pathway that is common to thiamine and purines. Glutamine phosphoribosyl pyrophosphate (PRPP) amidotransferase is the product of the purF gene in Salmonella enterica and catalyzes the synthesis of PRA from PRPP and glutamine. Strains lacking PurF require exogenous addition of purines for growth. However, under some growth conditions or with specific secondary mutations these strains grow in the absence of exogenous thiamine. Mutant alleles of hisA, which encodes 1-(5-phosphoribosyl)-5-[(5-phosphoribosylamino) methylideneamino] imidazole-4-carboxamide (ProFAR) isomerase, allowed PurF-independent PRA formation. The alleles of hisA that suppressed the requirement for exogenous thiamine resulted in proteins with reduced enzymatic activity. Data presented here showed that decreased activity of HisA altered metabolite pools and allowed PRA formation from ProFAR. Possible mechanisms of this conversion were proposed. The results herein emphasize the plasticity of the metabolic network and specifically highlight the potential for chemical syntheses to contribute to network robustness.
url http://europepmc.org/articles/PMC3485032?pdf=render
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AT lukeafenlon perturbationsinhistidinebiosynthesisuncoverrobustnessinthemetabolicnetworkofsalmonellaenterica
AT dianamdowns perturbationsinhistidinebiosynthesisuncoverrobustnessinthemetabolicnetworkofsalmonellaenterica
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