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Laemmerhofer, M.

Publications and source records attributed to Laemmerhofer, M..

2 recordsLinked to original sources

Lipase-mediated detoxification of host-derived antimicrobial fatty acids by Staphylococcus aureus

Long-chain fatty acids with antimicrobial properties are abundant on the skin and mucosal surfaces, where they are essential to restrict the proliferation of opportunistic pathogens such as Staphylococcus aureus. These antimicrobial fatty acids (AFAs) elicit bacterial adaptation strategies, which have yet to be fully elucidated. Characterizing the pervasive mechanisms used by S. aureus to resist AFAs could open new avenues to prevent pathogen colonization. Here, we identify the S. aureus lipase Lip2 as a novel resistance factor against AFAs. Lip2 detoxifies AFAs via esterification with cholesterol. This is reminiscent of the activity of the fatty acid-modifying enzyme (FAME), whose identity has remained elusive for over three decades. In vitro, Lip2-dependent AFA-detoxification was apparent during planktonic growth and biofilm formation. Our genomic analysis revealed that prophage-mediated inactivation of Lip2 was more common in blood and nose isolates than in skin strains, suggesting a particularly important role of Lip2 for skin colonization. Accordingly, in a mouse model of S. aureus skin colonization, bacteria were protected from sapienic acid - a human-specific AFA - in a cholesterol- and lipase-dependent manner. These results suggest Lip2 is the long-sought FAME that exquisitely manipulates environmental lipids to promote bacterial growth. Our data support a model in which S. aureus exploits and/or exacerbates lipid disorders to colonize otherwise inhospitable niches.

microbiology↗

To start or to discontinue the pill - changes in progestogens reflected by resting-state connectivity and positive mood

Oral contraceptive (OC) intake has been associated with alterations in functional brain architecture and socio-affective processes. However, most previous studies have been limited by cross-sectional designs and/or did not account for synthetic sex hormone concentrations. The aim of this longitudinal study was to determine the effects of starting vs discontinuing OCs on socio-affective functions such as mood and emotion cognition, and to identify their possible neuroendocrinological substrates. To this end, 88 young healthy women performed the behavioral and fMRI measures twice, three to eight months apart: 26 natural cycling women twice during menstruation, 26 OC users twice during OC intake, 25 OC discontinuers and 11 OC starters before and after discontinuation or start, respectively. In addition to mean-based analyses, we used intersubject representational similarity analyses to determine relationships between interindividual variability in within-subject changes of hormone profiles, including concentrations of endogenous and synthetic hormones, region-specific resting state functional connectivity (parcelwise RSFC) and socio-affective measures. Across the whole sample, interindividual patterns of changes in RSFC of fronto-parietal regions, parts of the left hippocampus and the right cerebellum reflected change patterns of progestogen levels. For the right superior orbitofrontal gyrus (OFG), a trinity of idiosyncratic patterns was found in changes of progestogens, RSFC and positive mood. Active OC intake was associated with higher self-reported depressive symptoms in OC discontinuers (and starters). Emotion recognition performance was not associated with changes in hormone profiles or RSFC. Overall, progestogens rather than estrogens appear to be associated with functional brain architecture of the frontal and subcortical/cerebellar regions and positive mood. The right superior OFG represents a possible neural substrate for progestogen-induced changes in positive mood. This study indicates the importance of a multidimensional, longitudinal approach when being interested in effects of hormonal contraception on womens brain and behavior.

neuroscience↗