Widespread bacterial protein flavinylation in functionally distinct extracytosolic redox biochemistries
Méheust, R.; Huang, S.; Rivera-Lugo, R.; Banfield, J.; Light, S. H.
Show abstract
Disparate redox activities that take place beyond the bounds of the prokaryotic cell cytosol must connect to membrane or cytosolic electron pools. Proteins post-translationally flavinylated by the enzyme ApbE mediate electron transfer in several characterized extracytosolic redox systems but the breadth of functions of this modification remains unknown. Here we present a comprehensive bioinformatic analysis of 31,910 prokaryotic genomes that provides evidence of extracytosolic ApbEs within ~50% of bacteria and the involvement of flavinylation in numerous uncharacterized biochemical processes. By mining flavinylation-associated gene clusters, we identify five protein classes responsible for transmembrane electron transfer and two domains of unknown function (DUF2271 and DUF3570) that are flavinylated by ApbE. We observe flavinylation/iron transporter gene colocalization patterns that implicate functions in iron reduction and assimilation. We find associations with characterized and uncharacterized respiratory oxidoreductases that highlight roles of flavinylation in respiratory electron transport chains. Finally, we identify interspecies gene cluster variability consistent with flavinylation/cytochrome functional redundancies and discover a class of "multi-flavinylated proteins'' that may resemble multiheme cytochromes in facilitating longer distance electron transfer. These findings provide key mechanistic insight into an important facet of bacterial physiology and establish flavinylation as a functionally diverse mediator of extracytosolic electron transfer. Impact StatementBioinformatic and biochemical studies find that covalently bound flavins are common and participate in wide-ranging extracytosolic redox activities throughout bacterial life.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Resolving phylogenetic and biochemical barriers to functional expression of heterologous iron-sulphur cluster enzymes 94%
- Structure of Geobacter OmcZ filaments suggests extracellular cytochrome polymers evolved independently multiple times 94%
- Comprehensive phylogenetic analysis of the ribonucleotide reductase family reveals an ancestral clade and the role of insertions and extensions in diversification 94%
Similar papers in this journal
- Machine learning uncovers a data-driven transcriptional regulatory network for the Crenarchaeal thermoacidophile Sulfolobus acidocaldarius 94%
- Ancestral absence of electron transport chains in Patescibacteria and DPANN 94%
- An ecological basis for dual genetic code expansion in marine deltaproteobacteria 94%
Similar papers in this journal
- In Hyphomicrobium denitrificans two related sulfane-sulfur responsive transcriptional repressors regulate thiosulfate oxidation and have a deep impact on nitrate respiration and anaerobic biosyntheses 95%
- The McdAB system positions α-carboxysomes in proteobacteria 95%
- The plant pathogen Pectobacterium atrosepticum contains a functional formate hydrogenlyase-2 complex. 94%
Similar papers in this journal
- A unique symbiosome in an anaerobic single-celled eukaryote 95%
- Genetic potential for aerobic respiration and denitrification in globally distributed respiratory endosymbionts 94%
- Vitamin interdependencies predicted by metagenomics-informed network analyses validated in microbial community microcosms 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.