bioRxiv · 10.1101/2024.12.18.629263
Host and rabies virus gene expression is shaped by human brain cell type and reveals a preexisting pro-viral transcriptional state in astrocytes
Abstract
How virus-host cell interactions and innate immune antagonism shape neurotropic infection dynamics across diverse brain cell types are largely unknown. To "unmask" and study how innate immune inhibition affects cell type-specific transcriptional regulation of the human and viral genome, we performed single-cell RNA sequencing of human brain cell co-cultures, comparing an isolate of rabies virus (RABV) to its mutant incapable of antagonizing interferon- and NF-{kappa}B-dependent responses. RABV gene expression was shaped by host cell type. RABV induced small-scale, cell-type conserved transcriptional programs that likely support infection by 1) hijacking negative transcriptional feedback of pro-viral factors while 2) reducing anti-viral RNAs. Unexpectedly, disinhibited innate immune signaling increased RABV transcription, most strikingly in an infection-independent "pro-viral" astrocyte subpopulation. Further analysis suggested that "pro-viral"-like astrocytes are a rare subtype in the human brain and are primed to protect the brain during viral infection in concert with interferon-sensitive microglia recalcitrant to infection.
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Feige, L., Young, K., Cerapio, J. P., Kozaki, T., Kergoat, L., Libri, V., Ginhoux, F., Hasan, M., Ben Ameur, L., Chin, G., Goode, Z., Bourhy, H., Saunders, A.. 2024-12-20. Host and rabies virus gene expression is shaped by human brain cell type and reveals a preexisting pro-viral transcriptional state in astrocytes. https://doi.org/10.1101/2024.12.18.629263
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