Expression and characterization of PrnC—a flavin-dependent halogenase from the pyrrolnitrin biosynthetic pathway of Pseudomonas protegens Pf-5
Introduction: The antimicrobial pyrrolnitrin from Pseudomonas strains is formed in four steps from tryptophan and comprises two flavin-dependent halogenases. Both PrnC and PrnA can carry out regioselective chlorination and bromination and are carrier protein-independent. Whilst the tryptophan haloge...
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Veröffentlicht in: | Frontiers in catalysis 2023-07, Vol.3 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Introduction:
The antimicrobial pyrrolnitrin from
Pseudomonas
strains is formed in four steps from tryptophan and comprises two flavin-dependent halogenases. Both PrnC and PrnA can carry out regioselective chlorination and bromination and are carrier protein-independent. Whilst the tryptophan halogenase PrnA has been studied in detail in the past, this study focuses on the pyrrole halogenating enzyme PrnC.
Methods:
The halogenating enzyme PrnC, as well as the essential electron suppliers, the flavin reductases, have been produced soluble in
E. coli
. Furthermore, a screening of a rational compound library revealed that the pyrrole is essential for substrate recognition; however, the substitution pattern of the benzene ring is not limiting the catalysis.
Results and discussion:
This renders PrnC to be a synthetically valuable enzyme for the synthesis of pyrrolnitrin congeners. For its natural substrate monodechloroaminopyrrolnitrin (MDA), the K
M
value was determined as 14.4 ± 1.2 µM and a k
cat
of 1.66 ± 0.02 min
−1
, which is comparable to other halogenases. |
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ISSN: | 2673-7841 2673-7841 |
DOI: | 10.3389/fctls.2023.1231765 |