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scnasRNA-seq resolves in vivo single-cell RNA dynamics of immune cells during Salmonella infection [small intestine]

GSE280764 Mus musculus Expression profiling by high throughput sequencing 5 samples Submitted 2024/10/31 Platform GPL21273
Summary
The immune response against pathogens involves multiple cell state transitions and complex gene expression changes. Here we established an in vivo single-cell nascent RNA labeling sequencing method (scnasRNA-seq) and applied it to survey time-resolved RNA dynamics during immune response to acute enteric infection with Salmonella. We showed that detection of nascent RNA synthesis reflects more realistic information on cell activation and gene transcription than total RNA level. Interplay of nascent RNA synthesis and RNA degradation together modulate dynamics of total RNA. We found that bone marrow macrophages are first primed at very early stage upon Salmonella infection. In contrast, the innate immune response of macrophages in intestine is limited. Notably, intestinal CD8+ T cells and plasma cells are rapidly and specifically activated at early stage post infection. Intestinal late enterocytes quickly express MHC-I molecules and present Salmonella antigen to CD8+ T cells for their activation, serving as antigen presenting cells for initiation of adaptive immunity. Our findings unveil novel RNA control strategies of immune cells and dynamic time course of immune response activation upon Salmonella infection, challenging the doctrine boundary between innate immunity and adaptive immunity against bacterial infection.
Published in
scIVNL-seq resolves in vivo single-cell RNA dynamics of immune cells during Salmonella infection
Xiong Z, Wu R, Wang Y et al. · Nature communications 2025 · PMID 40858611 · doi:10.1038/s41467-025-63155-1
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Also filed as BioProject PRJNA1087550 and SRA study SRP495165. Searching any of these in the dataset finder brings you back here.

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