Cargando…

Regulation of the pyrimidine biosynthetic pathway by lysine acetylation of E. coli OPRTase

The de novo pyrimidine biosynthesis pathway is an important route due to the relevance of its products, its implications in health and its conservation among organisms. Here, we investigated the regulation by lysine acetylation of this pathway. To this aim, intracellular and extracellular metabolite...

Descripción completa

Detalles Bibliográficos
Autores principales: Lozano‐Terol, Gema, Gallego‐Jara, Julia, Sola‐Martínez, Rosa Alba, Ortega, Álvaro, Martínez Vivancos, Adrián, Cánovas Díaz, Manuel, de Diego Puente, Teresa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10087573/
https://www.ncbi.nlm.nih.gov/pubmed/35989594
http://dx.doi.org/10.1111/febs.16598
_version_ 1785022379366285312
author Lozano‐Terol, Gema
Gallego‐Jara, Julia
Sola‐Martínez, Rosa Alba
Ortega, Álvaro
Martínez Vivancos, Adrián
Cánovas Díaz, Manuel
de Diego Puente, Teresa
author_facet Lozano‐Terol, Gema
Gallego‐Jara, Julia
Sola‐Martínez, Rosa Alba
Ortega, Álvaro
Martínez Vivancos, Adrián
Cánovas Díaz, Manuel
de Diego Puente, Teresa
author_sort Lozano‐Terol, Gema
collection PubMed
description The de novo pyrimidine biosynthesis pathway is an important route due to the relevance of its products, its implications in health and its conservation among organisms. Here, we investigated the regulation by lysine acetylation of this pathway. To this aim, intracellular and extracellular metabolites of the route were quantified, revealing a possible blockage of the pathway by acetylation of the OPRTase enzyme (orotate phosphoribosyltransferase). Chemical acetylation of OPRTase by acetyl‐P involved a decrease in enzymatic activity. To test the effect of acetylation in this enzyme, K26 and K103 residues were selected to generate site‐specific acetylated proteins. Several differences were observed in kinetic parameters, emphasizing that the k (cat) of these mutants showed a strong decrease of 300 and 150‐fold for OPRTase‐103AcK and 19 and 6.3‐fold for OPRTase‐26AcK, for forward and reverse reactions. In vivo studies suggested acetylation of this enzyme by a nonenzymatic acetyl‐P‐dependent mechanism and a reversion of this process by the CobB deacetylase. A complementation assay of a deficient strain in the pyrE gene with OPRTase‐26AcK and OPRTase‐103AcK was performed, and curli formation, stoichiometric parameters and orotate excretion were measured. Complementation with acetylated enzymes entailed a profile very similar to that of the ∆pyrE strain, especially in the case of complementation with OPRTase‐103AcK. These results suggest regulation of the de novo pyrimidine biosynthesis pathway by lysine acetylation of OPRTase in Escherichia coli. This finding is of great relevance due to the essential role of this route and the OPRTase enzyme as a target for antimicrobial, antiviral and cancer treatments.
format Online
Article
Text
id pubmed-10087573
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-100875732023-04-12 Regulation of the pyrimidine biosynthetic pathway by lysine acetylation of E. coli OPRTase Lozano‐Terol, Gema Gallego‐Jara, Julia Sola‐Martínez, Rosa Alba Ortega, Álvaro Martínez Vivancos, Adrián Cánovas Díaz, Manuel de Diego Puente, Teresa FEBS J Original Articles The de novo pyrimidine biosynthesis pathway is an important route due to the relevance of its products, its implications in health and its conservation among organisms. Here, we investigated the regulation by lysine acetylation of this pathway. To this aim, intracellular and extracellular metabolites of the route were quantified, revealing a possible blockage of the pathway by acetylation of the OPRTase enzyme (orotate phosphoribosyltransferase). Chemical acetylation of OPRTase by acetyl‐P involved a decrease in enzymatic activity. To test the effect of acetylation in this enzyme, K26 and K103 residues were selected to generate site‐specific acetylated proteins. Several differences were observed in kinetic parameters, emphasizing that the k (cat) of these mutants showed a strong decrease of 300 and 150‐fold for OPRTase‐103AcK and 19 and 6.3‐fold for OPRTase‐26AcK, for forward and reverse reactions. In vivo studies suggested acetylation of this enzyme by a nonenzymatic acetyl‐P‐dependent mechanism and a reversion of this process by the CobB deacetylase. A complementation assay of a deficient strain in the pyrE gene with OPRTase‐26AcK and OPRTase‐103AcK was performed, and curli formation, stoichiometric parameters and orotate excretion were measured. Complementation with acetylated enzymes entailed a profile very similar to that of the ∆pyrE strain, especially in the case of complementation with OPRTase‐103AcK. These results suggest regulation of the de novo pyrimidine biosynthesis pathway by lysine acetylation of OPRTase in Escherichia coli. This finding is of great relevance due to the essential role of this route and the OPRTase enzyme as a target for antimicrobial, antiviral and cancer treatments. John Wiley and Sons Inc. 2022-09-02 2023-01 /pmc/articles/PMC10087573/ /pubmed/35989594 http://dx.doi.org/10.1111/febs.16598 Text en © 2022 The Authors. The FEBS Journal published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Lozano‐Terol, Gema
Gallego‐Jara, Julia
Sola‐Martínez, Rosa Alba
Ortega, Álvaro
Martínez Vivancos, Adrián
Cánovas Díaz, Manuel
de Diego Puente, Teresa
Regulation of the pyrimidine biosynthetic pathway by lysine acetylation of E. coli OPRTase
title Regulation of the pyrimidine biosynthetic pathway by lysine acetylation of E. coli OPRTase
title_full Regulation of the pyrimidine biosynthetic pathway by lysine acetylation of E. coli OPRTase
title_fullStr Regulation of the pyrimidine biosynthetic pathway by lysine acetylation of E. coli OPRTase
title_full_unstemmed Regulation of the pyrimidine biosynthetic pathway by lysine acetylation of E. coli OPRTase
title_short Regulation of the pyrimidine biosynthetic pathway by lysine acetylation of E. coli OPRTase
title_sort regulation of the pyrimidine biosynthetic pathway by lysine acetylation of e. coli oprtase
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10087573/
https://www.ncbi.nlm.nih.gov/pubmed/35989594
http://dx.doi.org/10.1111/febs.16598
work_keys_str_mv AT lozanoterolgema regulationofthepyrimidinebiosyntheticpathwaybylysineacetylationofecolioprtase
AT gallegojarajulia regulationofthepyrimidinebiosyntheticpathwaybylysineacetylationofecolioprtase
AT solamartinezrosaalba regulationofthepyrimidinebiosyntheticpathwaybylysineacetylationofecolioprtase
AT ortegaalvaro regulationofthepyrimidinebiosyntheticpathwaybylysineacetylationofecolioprtase
AT martinezvivancosadrian regulationofthepyrimidinebiosyntheticpathwaybylysineacetylationofecolioprtase
AT canovasdiazmanuel regulationofthepyrimidinebiosyntheticpathwaybylysineacetylationofecolioprtase
AT dediegopuenteteresa regulationofthepyrimidinebiosyntheticpathwaybylysineacetylationofecolioprtase