Journal Article
RNA-Seq time-course analysis of neural precursor cell transcriptome in response to herpes simplex Virus-1 infection
Joel A. Wood; Srilakshmi Chaparala; Cecilia Bantang; Ansuman Chattopadhyay; Maribeth A. Wesesky; Paul R. Kinchington; Vishwajit L. Nimgaonkar; David C. Bloom; Leonardo D’Aiuto
Journal of NeuroVirology · Vol. 30, Issue 2 · pp. 131-145 · 2024
Abstract
The neurogenic niches within the central nervous system serve as essential reservoirs for neural precursor cells (NPCs), playing a crucial role in neurogenesis. However, these NPCs are particularly vulnerable to infection by the herpes simplex virus 1 (HSV-1). In the present study, we investigated the changes in the transcriptome of NPCs in response to HSV-1 infection using bulk RNA-Seq, compared to those of uninfected samples, at different time points post infection and in the presence or absence of antivirals. The results showed that NPCs upon HSV-1 infection undergo a significant dysregulation of genes playing a crucial role in aspects of neurogenesis, including genes affecting NPC proliferation, migration, and differentiation. Our analysis revealed that the CREB signaling, which plays a crucial role in the regulation of neurogenesis and memory consolidation, was the most consistantly downregulated pathway, even in the presence of antivirals. Additionally, cholesterol biosynthesis was significantly downregulated in HSV-1-infected NPCs. The findings from this study, for the first time, offer insights into the intricate molecular mechanisms that underlie the neurogenesis impairment associated with HSV-1 infection.