Activation-independent capture of free fatty acids at the bacterial cell envelope by BrtB
Kahn, A.; Sousa, C. I. F.; Reis, J. P. A.; Russo, D. A.; Rego, A.; Queiros, R. J. C. V.; Cuau, M.; Zedler, J. A. Z.; Figueiredo, S. A. C.; Oliveira, P.; Leao, P.
Show abstract
Fatty acids (FAs) are key metabolites in living organisms, shaping membrane architecture and helping cellular acclimatization to changing conditions. Bacteria synthesize FA de novo but can also reclaim them from membrane lipids or uptake them from the environment, usually converting free fatty acids (FFAs) into activated FAs that can then be further metabolized. In cyanobacteria, it is the acyl-acyl carrier protein synthetase (Aas) that activates exogenous FFAs. Yet, the cyanobacterial enzyme BrtB was recently shown to esterify, in vitro, FFAs directly onto abundant chlorinated glycolipids (bartolosides), generating bartoloside fatty acid esters (B-FAs). Whether this chemistry operates in vivo, where it occurs, and what its implications are for cell physiology has remained unclear. Here we show that in the cyanobacterium Synechocystis salina LEGE 06099, BrtB captures FFAs at the cell envelope without prior activation to generate B-FAs. We found that supplemented FFAs were converted into B-FAs within minutes. Strikingly, this response occurred with minimal changes in gene expression and little alteration of the extracellular proteome, consistent with a pathway already in place. Additionally, we observed that B-FAs can further be hydrolyzed into hydroxybartolosides - the levels of the latter metabolites increase in response to FA supply, suggesting a transient sequestration of FFA. Our results demonstrate that activation of FFA is not the only route to their cellular incorporation and identify a specialized-metabolite pathway that captures exogenous FFAs at the cyanobacterial cell envelope.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Non-consecutive enzyme interactions within TCA cycle supramolecular assembly regulate carbon-nitrogen metabolism 96%
- Multiple acyl-CoA dehydrogenase deficiency kills Mycobacterium tuberculosis in vitro and during infection 96%
- The mycobacterial glycoside hydrolase LamH enables capsular arabinomannan release and stimulates growth 96%
Similar papers in this journal
- Structure-Function analysis of Lactiplantibacillus plantarum DltE reveals D-alanylated lipoteichoic acids as direct symbiotic cues supporting Drosophila juvenile growth 95%
- Lytic transglycosylases mitigate periplasmic crowding by degrading soluble cell wall turnover products 95%
- Periplasm homeostatic regulation maintains spatial constraints essential for cell envelope processes and cell viability 94%
Similar papers in this journal
- Dynamic network regulating phosphatidic acid homeostasis revealed using membrane editing coupled to proximity labeling 95%
- Directed evolution of the multicopper oxidase laccase for cell surface proximity labeling and electron microscopy 94%
- Modification of cell wall polysaccharide spatially controls cell division in Streptococcus mutans 94%
Similar papers in this journal
- Exquisite specificity of Pks13 defines the essentiality of trehalose in mycobacteria 95%
- A squalene-hopene cyclase in Schizosaccharomyces japonicus represents a eukaryotic adaptation to sterol-independent anaerobic growth 95%
- Fluoride triggers lysis in Streptococcus mutans by inhibition of Clp protease complex leading to an unabated competence cascade 95%
"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.