bioRxiv Science⌕ Search

Biology subjects

Boehne, M.

Publications and source records attributed to Boehne, M..

2 recordsLinked to original sources

Transcriptomic profiling of human γδ T cells reveals non-linear immune aging characterized by childhood transitions and relative stability in adulthood

{gamma}{delta} T cells are one of the first T cell subsets developing in early ontogeny and show various effector functions in immune homeostasis and response in the young and the old. However, their maturation trajectories from infancy to children, adults and elderly have not been systematically defined. Here, we generated a single-cell transcriptome atlas of 106,711 {gamma}{delta} T cells from 223 individuals spanning infancy to old age. Our analysis reveals that {gamma}{delta} T cell aging is non-linear, characterized by pronounced childhood transitions followed by relative stability throughout adulthood despite marked inter-individual variability. In childhood, changes from developmental and mitochondrial programs toward cytotoxicity and inflammaging were evident. This includes maturation trajectories from GZMK intermediates to GZMB+Perforin+ effectors at both RNA and protein levels. Taken together, our study delineates the aging trajectories of human {gamma}{delta} T cells, establishes {gamma}{delta} T cells as a cellular paradigm of non-linear immune aging, and provides a comprehensive resource for investigating {gamma}{delta} T cell biology across the human lifespan.

immunology↗

A potential role of altered SIgA-targeting of gut microbiota in long-term dysbiosis in pediatric solid organ transplant recipients

BackgroundComposition of gut microbiota (GM) is altered in solid organ transplantation (SOT) patients, where the degree of dysbiosis is associated with long-term survival. Factors governing dysbiosis are poorly understood with immunosuppression therapy believed to be involved in altering GM composition in those patients, either directly or via the immune system. At the interface stands secretory (S)IgA, however, little is known on its role governing dysbiosis in the context of SOT. In this study, we performed quantitative metagenomic analyses of GM accompanied by SIgA sequencing in 48 pediatric SOT recipients (age = 10.6 {+/-} 4.7 years) receiving either a heart (HTR, n=10), a kidney (KTR, n=11) or a liver (LTR, n=27) and compared results to healthy controls (HC, n=16). ResultsWe confirmed compositional and functional dysbiosis in SOT patients that broadly clustered into two groups, where cluster 1 (n=23) comprised most LTR patients and was closer to HC compared with cluster 2 (n=24) that exhibited stronger dysbiosis and included most HTR and KTR patients. The degree of dysbiosis was associated with Tacrolimus (TAC) levels. Overall, patients exhibited higher SIgA levels than HC, along with an increased percentage of bacteria targeted and altered target spectra. Furthermore, altered SIgA responses were associated with the degree of dysbiosis and were especially increased in cluster 2, in particular in HTR patients. A mechanistic model connecting immunosuppression, GM composition and SIgA targeting is proposed. ConclusionOur study suggests that altered SIgA responses play an important role for GM alterations observed in SOT patients. It opens new therapeutic angles to combat GM dysbiosis and associated long-erm complications.

microbiology↗