Overall, this work establishes pyoverdines as metallophores involved in La uptake, re-framing them from strictly iron-scavenging siderophores to dual-purpose metallophores with Ln-binding activity.
Abstract
Lanthanides (Ln) are recently discovered cofactors for alcohol metabolism in a growing number of bacteria, including the soil-dwelling bacterium Pseudomonas putida, yet the mechanisms for Ln uptake are poorly defined. Here, we discovered that the non-ribosomal peptide synthase biosynthetic gene cluster, pvdLIJD, was essential to Ln-dependent growth in P. putida. Pyoverdine G4R and its precursor ferribactin were identified as pvdLIJD gene products with La-responsive abundances, and both chelated La as well as iron. Deletion of the putative pyoverdine outer membrane transport system encoded by fpvA and exbBD:tonB were strongly linked to Ln-dependent growth in a concentration-dependent manner. Global transcriptomes were remodeled in response to La, but weak evidence of transcriptional pvdLIJD regulation and no evidence of discernment between La provided as chloride versus oxide were observed. Overall, this work establishes pyoverdines as metallophores involved in La uptake, re-framing them from strictly iron-scavenging siderophores to dual-purpose metallophores with Ln-binding activity.
The discovery and characterization of aen gene cluster is reported, a previously uncharacterized MNIO-associated gene cluster in the opportunistic pathogen Pseudomonas aeruginosa PAO1, and a potential role for aeruginin in chlorite responsive periplasmic stress adaptation is suggested.
Zhuang-Zhuang Chu, Han-Zhong Feng, Hang Xu et al.· Journal of Natural Products· 0 citations
It is common for bacteriophages to encode proteins that are strongly inhibitory to growth of the bacterial host, and about 10% of mycobacteriophage-encoded proteins have this property. Adephagia is a Cluster K1 mycobacteriophage and prior cloning and expression of 66 Adephagia non-structural genes identified 14 that ar...
Michael J. Lauer, K. Freeman, Da Jiang et al.· bioRxiv· 0 citations
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-4-hydroxy-L-proline (T4LHyp), primarily released during the natural degradation of collagen, is absorbed and catabolised by heterotrophic bacteria, contributing to the global recycling of carbon and nitrogen. While bacterial T4LHyp catabolism is well documented, our understanding on how bacteria recog...
Yan Wang, Yan-Ping Zhu, Ning-Hua Liu et al.· Communications Biology· 0 citations
These findings provide a promising strategy for engineering NMN-producing food-grade microbial cell factories by overcoming a paradoxical downregulation of the pentose phosphate pathway (PPP) in a GntR-family transcription factor.
Ling-Hui Kong, Xin-Yu Li, Qing He et al.· Journal of Agricultural and...· 0 citations
Bacterial transformation of 3 nitropropionic acid (3NPA) is typically viewed through canonical nitronate monooxygenases (NMOs), yet sequence annotation poorly resolves function across this flavoprotein family. Here we show that the environmental YrpB/NMO associated oxidoreductase space is dominated by YrpB related prot...
The results suggest the feasibility of NMN biosynthesis in engineered P. putida KT2440 and highlight the importance of balancing precursor supply, competing reactions, and product transport.
Luna Gao, Lin Wei, Siqi Wang et al.· Microorganisms· 0 citations
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