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Open AccessJournal ArticleDOI

Outer membrane vesicles catabolize lignin-derived aromatic compounds in Pseudomonas putida KT2440

TLDR
This work proposes a mechanism for extracellular nutrient acquisition from aromatic compounds by soil bacteria, which holds promise for improving the efficiency of microbial lignin conversion and suggests that OMVs could potentially be useful tools for synthetic biology and biotechnological applications.
Abstract
Lignin is an abundant and recalcitrant component of plant cell walls. While lignin degradation in nature is typically attributed to fungi, growing evidence suggests that bacteria also catabolize this complex biopolymer. However, the spatiotemporal mechanisms for lignin catabolism remain unclear. Improved understanding of this biological process would aid in our collective knowledge of both carbon cycling and microbial strategies to valorize lignin to value-added compounds. Here, we examine lignin modifications and the exoproteome of three aromatic–catabolic bacteria: Pseudomonas putida KT2440, Rhodoccocus jostii RHA1, and Amycolatopsis sp. ATCC 39116. P. putida cultivation in lignin-rich media is characterized by an abundant exoproteome that is dynamically and selectively packaged into outer membrane vesicles (OMVs). Interestingly, many enzymes known to exhibit activity toward lignin-derived aromatic compounds are enriched in OMVs from early to late stationary phase, corresponding to the shift from bioavailable carbon to oligomeric lignin as a carbon source. In vivo and in vitro experiments demonstrate that enzymes contained in the OMVs are active and catabolize aromatic compounds. Taken together, this work supports OMV-mediated catabolism of lignin-derived aromatic compounds as an extracellular strategy for nutrient acquisition by soil bacteria and suggests that OMVs could potentially be useful tools for synthetic biology and biotechnological applications.

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Journal ArticleDOI

Industrial biotechnology of Pseudomonas putida: advances and prospects

TL;DR: The recent advances and prospects in genetic engineering, systems and synthetic biology, and applications of P. putida as a cell factory are summarized and Pseudomonas putida advances to a global industrial cell factory.
Journal ArticleDOI

Passive membrane transport of lignin-related compounds.

TL;DR: It is predicted that passive transport processes in plants and bacteria for uncharged aromatic compounds are likely sufficient for lignin biosynthesis and catabolism, thus implying that membrane translocation rates are controlled by compound delivery and utilization rates and membrane concentration gradients.
Journal ArticleDOI

Depolymerization and conversion of lignin to value-added bioproducts by microbial and enzymatic catalysis

TL;DR: In this paper, the most recent advances in degradation and conversion of lignin to value-added bioproducts catalyzed by microbes and enzymes were summarized, and new insights for future work to overcome the heterogeneity and recalcitrance of Lignin and convert it to value added products by microbial and enzymatic catalysis were proposed.
Journal ArticleDOI

Lignin valorization by bacterial genus Pseudomonas: State-of-the-art review and prospects.

TL;DR: The potential of genus Pseudomonas in lignin valorization is critically reviewed along with the advanced genetic techniques and tools to ease the use of lign in/lignin-model compounds for the synthesis of bioproducts.
Journal ArticleDOI

Intracellular pathways for lignin catabolism in white-rot fungi.

TL;DR: In this paper, the authors employ 13C-isotope labeling, systems biology approaches, and in vitro enzyme assays to demonstrate that two white-rot fungi, Trametes versicolor and Gelatoporia subvermispora, funnel carbon from lignin-derived aromatic compounds into central carbon metabolism via intracellular catabolic pathways.
References
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Journal ArticleDOI

SignalP 4.0: discriminating signal peptides from transmembrane regions

TL;DR: SignalP 4.0 was the best signal-peptide predictor for all three organism types but was not in all cases as good as SignalP 3.0 according to cleavage-site sensitivity or signal- peptide correlation when there are no transmembrane proteins present.
Journal ArticleDOI

A method for the quantitative recovery of protein in dilute solution in the presence of detergents and lipids

D. Wessel, +1 more
TL;DR: A rapid method based on a defined methanol-chloroform-water mixture for the quantitative precipitation of soluble as well as hydrophobic proteins from dilute solutions (e.g., column chromatography effluents) has been developed.
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Lignin valorization: improving lignin processing in the biorefinery.

TL;DR: Recent developments in genetic engineering, enhanced extraction methods, and a deeper understanding of the structure of lignin are yielding promising opportunities for efficient conversion of this renewable resource to carbon fibers, polymers, commodity chemicals, and fuels.
Journal ArticleDOI

PSORTb 3.0

TL;DR: This work developed PSORTb version 3.0 with improved recall, higher proteome-scale prediction coverage, and new refined localization subcategories, and evaluated the most accurate SCL predictors using 5-fold cross validation plus an independent proteomics analysis.
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The paleozoic origin of enzymatic lignin decomposition reconstructed from 31 fungal genomes

Dimitrios Floudas, +70 more
- 29 Jun 2012 - 
TL;DR: Comparative analyses of 31 fungal genomes suggest that lignin-degrading peroxidases expanded in the lineage leading to the ancestor of the Agaricomycetes, which is reconstructed as a white rot species, and then contracted in parallel lineages leading to brown rot and mycorrhizal species.
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