Matches in SemOpenAlex for { <https://semopenalex.org/work/W2528072464> ?p ?o ?g. }
- W2528072464 endingPage "23938" @default.
- W2528072464 startingPage "23929" @default.
- W2528072464 abstract "Pyoverdines are high affinity siderophores produced by a broad range of pseudomonads to enhance growth under iron deficiency. They are especially relevant for pathogenic and mutualistic strains that inhabit iron-limited environments. Pyoverdines are generated from non-ribosomally synthesized highly modified peptides. They all contain an aromatic chromophore that is formed in the periplasm by intramolecular cyclization steps. Although the cytoplasmic peptide synthesis and side-chain modifications are well characterized, the periplasmic maturation steps are far from understood. Out of five periplasmic enzymes, PvdM, PvdN, PvdO, PvdP, and PvdQ, functions have been attributed only to PvdP and PvdQ. The other three enzymes are also regarded as essential for siderophore biosynthesis. The structure of PvdN has been solved recently, but no function could be assigned. Here we present the first in-frame deletion of the PvdN-encoding gene. Unexpectedly, PvdN turned out to be required for a specific modification of pyoverdine, whereas the overall amount of fluorescent pyoverdines was not altered by the mutation. The mutant strain grew normally under iron-limiting conditions. Mass spectrometry identified the PvdN-dependent modification as a transformation of the N-terminal glutamic acid to a succinamide. We postulate a pathway for this transformation catalyzed by the enzyme PvdN, which is most likely functional in the case of all pyoverdines. Pyoverdines are high affinity siderophores produced by a broad range of pseudomonads to enhance growth under iron deficiency. They are especially relevant for pathogenic and mutualistic strains that inhabit iron-limited environments. Pyoverdines are generated from non-ribosomally synthesized highly modified peptides. They all contain an aromatic chromophore that is formed in the periplasm by intramolecular cyclization steps. Although the cytoplasmic peptide synthesis and side-chain modifications are well characterized, the periplasmic maturation steps are far from understood. Out of five periplasmic enzymes, PvdM, PvdN, PvdO, PvdP, and PvdQ, functions have been attributed only to PvdP and PvdQ. The other three enzymes are also regarded as essential for siderophore biosynthesis. The structure of PvdN has been solved recently, but no function could be assigned. Here we present the first in-frame deletion of the PvdN-encoding gene. Unexpectedly, PvdN turned out to be required for a specific modification of pyoverdine, whereas the overall amount of fluorescent pyoverdines was not altered by the mutation. The mutant strain grew normally under iron-limiting conditions. Mass spectrometry identified the PvdN-dependent modification as a transformation of the N-terminal glutamic acid to a succinamide. We postulate a pathway for this transformation catalyzed by the enzyme PvdN, which is most likely functional in the case of all pyoverdines." @default.
- W2528072464 created "2016-10-14" @default.
- W2528072464 creator A5023155190 @default.
- W2528072464 creator A5060985280 @default.
- W2528072464 creator A5081572486 @default.
- W2528072464 date "2016-11-01" @default.
- W2528072464 modified "2023-10-18" @default.
- W2528072464 title "PvdN Enzyme Catalyzes a Periplasmic Pyoverdine Modification" @default.
- W2528072464 cites W1545319228 @default.
- W2528072464 cites W1855297145 @default.
- W2528072464 cites W1964313477 @default.
- W2528072464 cites W1981765089 @default.
- W2528072464 cites W1984116228 @default.
- W2528072464 cites W1987329985 @default.
- W2528072464 cites W1991795057 @default.
- W2528072464 cites W1992145969 @default.
- W2528072464 cites W1993403449 @default.
- W2528072464 cites W1998109515 @default.
- W2528072464 cites W2013414388 @default.
- W2528072464 cites W2026465996 @default.
- W2528072464 cites W202788934 @default.
- W2528072464 cites W2029667189 @default.
- W2528072464 cites W2032541044 @default.
- W2528072464 cites W2034442220 @default.
- W2528072464 cites W2038568101 @default.
- W2528072464 cites W2053652542 @default.
- W2528072464 cites W2053709126 @default.
- W2528072464 cites W2069243281 @default.
- W2528072464 cites W2074439439 @default.
- W2528072464 cites W2084879740 @default.
- W2528072464 cites W2086358238 @default.
- W2528072464 cites W2094201044 @default.
- W2528072464 cites W2094548609 @default.
- W2528072464 cites W2095215400 @default.
- W2528072464 cites W2100837269 @default.
- W2528072464 cites W2101108802 @default.
- W2528072464 cites W2110035347 @default.
- W2528072464 cites W2111817213 @default.
- W2528072464 cites W2113594237 @default.
- W2528072464 cites W2126270875 @default.
- W2528072464 cites W2149224477 @default.
- W2528072464 cites W2149525061 @default.
- W2528072464 cites W2152301430 @default.
- W2528072464 cites W2153076508 @default.
- W2528072464 cites W2159614853 @default.
- W2528072464 cites W2168758997 @default.
- W2528072464 cites W2276647141 @default.
- W2528072464 cites W2279634186 @default.
- W2528072464 cites W2336535798 @default.
- W2528072464 cites W2384242567 @default.
- W2528072464 cites W2412487033 @default.
- W2528072464 cites W2462342881 @default.
- W2528072464 cites W4230400169 @default.
- W2528072464 cites W4230924169 @default.
- W2528072464 doi "https://doi.org/10.1074/jbc.m116.755611" @default.
- W2528072464 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/5104919" @default.
- W2528072464 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/27703013" @default.
- W2528072464 hasPublicationYear "2016" @default.
- W2528072464 type Work @default.
- W2528072464 sameAs 2528072464 @default.
- W2528072464 citedByCount "22" @default.
- W2528072464 countsByYear W25280724642017 @default.
- W2528072464 countsByYear W25280724642018 @default.
- W2528072464 countsByYear W25280724642019 @default.
- W2528072464 countsByYear W25280724642020 @default.
- W2528072464 countsByYear W25280724642021 @default.
- W2528072464 countsByYear W25280724642022 @default.
- W2528072464 countsByYear W25280724642023 @default.
- W2528072464 crossrefType "journal-article" @default.
- W2528072464 hasAuthorship W2528072464A5023155190 @default.
- W2528072464 hasAuthorship W2528072464A5060985280 @default.
- W2528072464 hasAuthorship W2528072464A5081572486 @default.
- W2528072464 hasBestOaLocation W25280724641 @default.
- W2528072464 hasConcept C104317684 @default.
- W2528072464 hasConcept C108319773 @default.
- W2528072464 hasConcept C143065580 @default.
- W2528072464 hasConcept C181199279 @default.
- W2528072464 hasConcept C185592680 @default.
- W2528072464 hasConcept C201663137 @default.
- W2528072464 hasConcept C2777593127 @default.
- W2528072464 hasConcept C547475151 @default.
- W2528072464 hasConcept C55493867 @default.
- W2528072464 hasConcept C86803240 @default.
- W2528072464 hasConceptScore W2528072464C104317684 @default.
- W2528072464 hasConceptScore W2528072464C108319773 @default.
- W2528072464 hasConceptScore W2528072464C143065580 @default.
- W2528072464 hasConceptScore W2528072464C181199279 @default.
- W2528072464 hasConceptScore W2528072464C185592680 @default.
- W2528072464 hasConceptScore W2528072464C201663137 @default.
- W2528072464 hasConceptScore W2528072464C2777593127 @default.
- W2528072464 hasConceptScore W2528072464C547475151 @default.
- W2528072464 hasConceptScore W2528072464C55493867 @default.
- W2528072464 hasConceptScore W2528072464C86803240 @default.
- W2528072464 hasIssue "46" @default.
- W2528072464 hasLocation W25280724641 @default.
- W2528072464 hasLocation W25280724642 @default.
- W2528072464 hasLocation W25280724643 @default.
- W2528072464 hasOpenAccess W2528072464 @default.