Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/58890

TítuloPhysiological characterization of a pyrimidine auxotroph exposes link between uracil phosphoribosyltransferase regulation and riboflavin production in Ashbya gossypii
Autor(es)Silva, Rui
Aguiar, Tatiana Q.
Oliveira, Carla
Domingues, Lucília
Palavras-chaveAshbya gossypii
uracil/uridine
auxotrophy
pyrimidine metabolism
uracil
phosphoribosyltransferase
riboflavin production
Data25-Mai-2019
EditoraElsevier 1
RevistaNew Biotechnology
CitaçãoSilva, Rui; Aguiar, Tatiana Q.; Oliveira, Carla; Domingues, Lucília, Physiological characterization of a pyrimidine auxotroph exposes link between uracil phosphoribosyltransferase regulation and riboflavin production in Ashbya gossypii. New Biotechnology, 50, 1-8, 2019
Resumo(s)The blockage of the de novo pyrimidine biosynthetic pathway at the orotidine-5-phosphate decarboxylase level was previously demonstrated to affect riboflavin production in the industrial producer fungus Ashbya gossypii. However, the molecular basis for the unusual sensitivity to uracil displayed by the pyrimidine auxotroph A. gossypii Agura3 was unknown. Here, uridine was shown to be the only intermediate of the pyrimidine salvage pathway able to fully restore this mutants growth. Conversely, uracil, which is routinely used to rescue pyrimidine auxotrophs, had a dose-dependent growth-inhibitory effect. Uracil phosphoribosyltransferase (UPRT) is the pyrimidine salvage pathway enzyme responsible for converting uracil to uridine monophosphate in the presence of phosphoribosyl pyrophosphate (PRPP). Characterization of the A. gossypii UPRT, as produced and purified from Escherichia coli, revealed that uracil concentrations above 1mM negatively affected its activity, thus explaining the hypersensitivity of the Agura3 mutant to uracil. Accordingly, overexpression of the AgUPRT encoding-gene in A. gossypii Agura3 led to similar growth on rich medium containing 5mM uracil or uridine. Decreased UPRT activity ultimately favors the preservation of PRPP, which otherwise may be directed to other pathways. In A. gossypii, increased PRPP availability promotes overproduction of riboflavin. Thus, this UPRT modulation mechanism reveals a putative means of saving precursors essential for riboflavin overproduction by this fungus. A similar uracil-mediated regulation mechanism of the UPRT activity is reported only in two protozoan parasites, whose survival depends on the availability of PRPP. Physiological evidence here discussed indicate that it may be extended to other distantly related flavinogenic fungi.
TipoArtigo
URIhttps://hdl.handle.net/1822/58890
DOI10.1016/j.nbt.2018.12.004
ISSN1871-6784
e-ISSN1871-6784
Versão da editorahttp://www.journals.elsevier.com/new-biotechnology/
Arbitragem científicayes
AcessoAcesso aberto
Aparece nas coleções:CEB - Publicações em Revistas/Séries Internacionais / Publications in International Journals/Series

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