bioRxiv · 10.1101/2020.06.09.139246
Unravelling lactate-acetate conversion to butyrate by intestinal Anaerobutyricum and Anaerostipes species
Abstract
The D-and L-forms of lactate are important fermentation metabolites produced by intestinal bacteria but have been found to negatively affect mucosal barrier function and human health. Of interest, both enantiomers of lactate can be converted with acetate into the presumed beneficial butyrate by a phylogenetically related group of anaerobes, including Anaerobutyricum and Anaerostipes spp. This is a low energy yielding process with a partially unknown pathway in Anaerobutyricum and Anaerostipes spp. and hence, we sought to address this via a comparative genomics, proteomics and physiology approach. We focused on Anaerobutyricum soehngenii and compared its growth on lactate with that on sucrose and sorbitol. Comparative proteomics revealed a unique active gene cluster that was abundantly expressed when grown on lactate. This active gene cluster, lctABCDEF, encodes a lactate dehydrogenase (lctD), electron transport proteins A and B (lctCB), along with a nickel-dependent racemase (lctE) and a lactate permease (lctF). Extensive search of available genomes of intestinal bacteria revealed this gene cluster to be highly conserved in only Anaerobutyricum and Anaerostipes spp. The present study demonstrates that A. soehngenii and several related Anaerobutyricum and Anaerostipes spp. are highly adapted for a lifestyle involving lactate plus acetate utilization in the human intestinal tract.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Shetty, S. A., Boeren, S., Nam Bui, T. P., Smidt, H., De Vos, W. M.. 2020-06-09. Unravelling lactate-acetate conversion to butyrate by intestinal Anaerobutyricum and Anaerostipes species. https://doi.org/10.1101/2020.06.09.139246
Cite the original work for its findings. Save a collection to share your selection of sources.