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Biology subjects

Bee, G. C. W.

Publications and source records attributed to Bee, G. C. W..

3 recordsLinked to original sources

immgenT: A Comprehensive Reference of Convergent T-cell States in the Mouse

The immgenT collaborative project generated a comprehensive molecular atlas of T cells spanning virtually all mouse organs and disease states, profiling ~800,000 cells from 750 samples with RNA, 128-plex surface protein, and {beta}TCR sequence. Applying a deep generative model to joint RNA and protein data defined the landscape of T-cell states organized into eight lineages and 107 robust clusters, integrating similar cells from different contexts, and resolving prior nomenclatures. Analysis of effector molecules, transcription factors and modules showed that both immunological functions and regulatory programs are shared across cell states. This framework provides a stable, reusable reference, demonstrated by computationally integrating 16 external datasets from diverse biological contexts. A set of public web tools supports browsing of these data and mapping of any dataset onto the immgenT framework. These results propose a molecular classification of T cells organized around a set of shared states reused across immunological contexts.

immunology↗

Pharmacological reduction of neutrophil infiltration reduces Clostridioides difficile infection severity

Clostridioides difficile is the leading cause of nosocomial infections and an urgent public health threat. This bacterial pathogen is challenging to treat due to antibiotic resistance and high recurrence rates, highlighting the need for additional therapeutic strategies. The host inflammatory response is a major driver of C. difficile-associated disease and associated with worse clinical outcomes. Currently, few strategies targeting the inflammatory response have been leveraged to treat CDI. Here, we show that administration of the prostaglandin E1 (PGE1) analog misoprostol markedly reduces CDI severity by modulating host immune responses. During CDI, misoprostol decreases circulating neutrophils and limits infiltration into the colon, reducing epithelial damage, intestinal pathology, and infection severity. Additionally, misoprostol reduces serum granulocyte colony-stimulating factor (G-CSF), an important cytokine in neutrophil mobilization, controlling neutrophil levels during CDI. Together, these findings highlight neutrophil infiltration as a key driver of C. difficile-associated disease and identify innate immune modulation as a potential host-directed therapeutic strategy.

immunology↗

BlpC-mediated selfish program leads to rapid loss of Streptococcus pneumoniae clonal diversity during infection

Chromosomal barcoding and high-throughput sequencing were used to investigate the population dynamics of Streptococcus pneumoniae. During infant mouse colonization, >35-fold reduction in diversity and expansion of a single clonal lineage was observed within 1 day post-inoculation. This loss of diversity was not due to immune factors, host microbiota or exclusively because of genetic drift. Rather, it required the expression of blp bacteriocins induced by the BlpC-quorum sensing pheromone. This points towards the role of intra-strain competition whereby the subpopulation reaching a quorum eliminates others that have yet to activate the blp locus. We show that this loss of diversity also restricts the number of unique clones that could establish colonization during transmission between hosts. Moreover, we show that genetic variation in the blp locus is associated with transmissibility in the human population. We posit this is due to its importance in clonal selection and its role as a selfish element.

microbiology↗