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Joyce, S. A.

Publications and source records attributed to Joyce, S. A..

2 recordsLinked to original sources

Lipidomic analysis reveals differences in Bacteroides species driven largely by plasmalogens, glycerophosphoinositols and certain sphingolipids

There has been increasing interest in bacterial lipids in recent years due, in part, to their emerging role as molecular signalling molecules. Bacteroides thetaiotaomicron is an important member of the mammalian gut microbiota that has been shown to produce sphingolipids (SP) that pass through the gut epithelial barrier to impact host SP metabolism and signal into host inflammation pathways. B. thetaiotaomicron also produces a novel family of N-acyl amines (called glycine lipids) that are potent ligands of host Toll-like receptor 2 (TLR2). Here, we specifically examine the lipid signatures of 4 species of gut associated Bacteroides. In total we identify 170 different lipids and we report that the range and diversity of Bacteroides lipids is species-specific. Multi-variate analysis reveals that the differences in the lipid signatures are largely driven by the presence/absence of plasmalogens, glycerophosphoinositols and certain SP. Moreover, we show that, in B. thetaiotaomicron, mutations altering either SP or glycine lipid biosynthesis results in significant changes in the levels of other lipids suggesting the existence of compensatory mechanisms required to maintain the functionality of the bacterial membrane. ImportanceBacteroides are important beneficial members of the gut microbiome that produce lipids that can function as cross-kingdom signalling molecules. We describe, for the first time, a comprehensive and qualitative comparison of the lipid signatures of 4 important Bacteroides species. We identify a group of Bacteroides core lipids and uncover species-specific differences in plasmalogen, glycerophospholipid and SP metabolism with more subtle differences observed in glycine lipid production. This data will provide a useful platform for the further characterisation of the lipid-based host-microbe dialogue and the influence of microbial lipids on host health and disease states.

microbiology↗

Rational selection and Characterisation of bile acid (BA) metabolising species of infant origin

Bile acids (BAs), biological detergents for nutrient digestion, are important local and systemic signalling molecules to interact with a variety of cell receptors central to influence host responses. While BAs are synthesized in the liver, the range and diversity of bile acids available to interact with these receptors is dictated by the gut microbiota. Bile salt hydrolase (BSH) activity is one such function, it is commonly represented and highly conserved across all major bacterial phyla in the gut. Studies relating to the importance of such modifications in early life are scarce. This study highlights BA metabolism diversity by functionally isolating BA metabolizing strains and by characterizing specific classes of BSH from the formula-fed transitioning gut. Isolates were identified to species levels, in silico and in vitro characterisation of their BSH genetic content, enzyme activity and substrate specificity. One of these isolates was identified as Lactobacillus acidophilus, a species frequently applied as a probiotic whereas three of these four isolates were identified as Enterococcus avium. This particular species is not well characterized in the literature and to our knowledge this is the first report of BSH activity and assessment for probiotic potential within this class of microbes. This study indicates that microbial BA altering activity appears functionally reduced, in the formula fed infant gut.

microbiology↗