Two methylthio-alkane reductases are functionally distinct in the purple nonsulfur bacterium Rhodopseudomonas palustris
Marquez Reyes, N. L.; Arroyo-Carriedo, A. A.; North, J. A.; Fixen, K. R.
Show abstract
Organosulfur compounds are the predominant sulfur source in terrestrial environments, requiring bacteria to use enzymes for their assimilation. Most described organosulfur-assimilating enzymes require oxygen, and enzymes that function under anoxic conditions remain poorly understood. Recently, methylthio-alkane reductase (Mar), a nitrogenase-like enzyme that reduces the volatile organic sulfur compounds (VOSCs) methylthio ethanol (MT-EtOH), dimethyl sulfide (DMS), and ethyl methyl sulfide (EMS) under anoxic conditions, was identified in the purple nonsulfur bacterium Rhodospirillum rubrum. However, another purple nonsulfur bacterium, Rhodopseudomonas palustris, has three loci of nitrogen fixation-like (NFL) genes with high sequence similarity to Mar, suggesting additional Mar-like enzymes with distinct roles. Here, we tested whether these NFL genes are required for VOSC assimilation in R. palustris. RNA-seq analysis revealed that all three NFL loci are upregulated under sulfur limitation, supporting a role in sulfur assimilation. Only disruption of the NFL genes encoded by RPA2634-37, renamed marBHDK1, caused fitness defects with EMS, DMS, and dimethylsulfoniopropionate (DMSP) as sulfur sources, indicating a functional Mar enzyme. The NFL genes RPA2347-48 and RPA2353-54, renamed marKD2 and marHB2, were required for activity with MT-EtOH or ethanethiol but not DMS, EMS, or DMSP. No activity was observed for the third locus, RPA2363-64, renamed nflDK. Overall, two Mar homologs in R. palustris are capable of VOSC reduction, one specialized for simple VOSCs and the other preferring a substrate with an additional functional group.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Deciphering the evolutionary history of ectoine catabolism, a compatible solute utilized by Vibrio diabolicus as an osmoprotectant and a nutrient source 96%
- A novel and evolutionarily distinct flavoprotein monooxygenase drives skatole degradation in Rhodococcus 95%
- The metabolic response of Pseudomonas taiwanensis to NADH dehydrogenase deficiency 95%
Similar papers in this journal
- Organohalide-respiring Desulfoluna species isolated from marine environments 96%
- Kinetic Plasticity of Nitrite-Oxidizing Bacteria Containing Cytoplasmic Nitrite Oxidoreductase 95%
- Novel prosthecate bacteria from the candidate phylum Acetothermia revealed by culture-independent genomics and advanced microscopy 95%
Similar papers in this journal
- Unusual metabolism and hypervariation in the genome of a Gracilibacteria (BD1-5) from an oil degrading community 94%
- Candidatus Ethanoperedens, a thermophilic genus of archaea mediating the anaerobic oxidation of ethane 93%
- Metabolic exchange and energetic coupling between nutritionally stressed bacterial species, the possible role of QS molecules 92%
Similar papers in this journal
- The isolate Caproiciproducens sp. 7D4C2 produces n-caproate at mildly acidic conditions from hexoses: genome and rBOX comparison with related strains and chain-elongating bacteria 95%
- Regulation of gene expression under high hydrostatic pressure: the versatile role of the master regulator SurR in energy metabolism 95%
- Catabolism of alkylphenols in Rhodococcus via a meta-cleavage pathway associated with genomic islands 94%
Similar papers in this journal
- Genomic characterization of three novel Desulfobacterota classes expand the metabolic and phylogenetic diversity of the Phylum 94%
- Metabolic Segregation and Functional Gene Clusters in Anaerobic Digestion Consortia 94%
- Genetic and physiological insights into the diazotrophic activity of a non-cyanobacterial marine diazotroph 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.