Compounds with capacity to quench the tyrosyl radical in Pseudomonas aeruginosa ribonucleotide reductase.

Diferric-oxo center EPR Inhibitors Radicals Ribonucleotide reductase Thermal shift analysis

Journal

Journal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry
ISSN: 1432-1327
Titre abrégé: J Biol Inorg Chem
Pays: Germany
ID NLM: 9616326

Informations de publication

Date de publication:
09 2019
Historique:
received: 26 04 2019
accepted: 12 06 2019
pubmed: 21 6 2019
medline: 14 7 2020
entrez: 21 6 2019
Statut: ppublish

Résumé

Ribonucleotide reductase (RNR) has been extensively probed as a target enzyme in the search for selective antibiotics. Here we report on the mechanism of inhibition of nine compounds, serving as representative examples of three different inhibitor classes previously identified by us to efficiently inhibit RNR. The interaction between the inhibitors and Pseudomonas aeruginosa RNR was elucidated using a combination of electron paramagnetic resonance spectroscopy and thermal shift analysis. All nine inhibitors were found to efficiently quench the tyrosyl radical present in RNR, required for catalysis. Three different mechanisms of radical quenching were identified, and shown to depend on reduction potential of the assay solution and quaternary structure of the protein complex. These results form a good foundation for further development of P. aeruginosa selective antibiotics. Moreover, this study underscores the complex nature of RNR inhibition and the need for detailed spectroscopic studies to unravel the mechanism of RNR inhibitors.

Identifiants

pubmed: 31218442
doi: 10.1007/s00775-019-01679-w
pii: 10.1007/s00775-019-01679-w
pmc: PMC6754346
doi:

Substances chimiques

Free Radicals 0
Tyrosine 42HK56048U
Ribonucleotide Reductases EC 1.17.4.-

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

841-848

Subventions

Organisme : Vetenskapsrådet
ID : 2016-01920
Pays : International
Organisme : Vetenskapsrådet
ID : 621-2014-5670
Pays : International

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Auteurs

Gustav Berggren (G)

Department of Chemistry, Ångström Laboratory, Uppsala University, Uppsala, Sweden. gustav.berggren@kemi.uu.se.

Margareta Sahlin (M)

Department of Biochemistry and Biophysics, Stockholm University, Stockholm, Sweden.

Mikael Crona (M)

Department of Biochemistry and Biophysics, Stockholm University, Stockholm, Sweden.
Swedish Orphan Biovitrum AB, Stockholm, Sweden.

Fredrik Tholander (F)

Department of Biochemistry and Biophysics, Stockholm University, Stockholm, Sweden.

Britt-Marie Sjöberg (BM)

Department of Biochemistry and Biophysics, Stockholm University, Stockholm, Sweden. britt-marie.sjoberg@dbb.su.se.

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Classifications MeSH