bioRxiv · 10.64898/2026.06.23.732381
Peroxisome dynamics during HSV-1 life cycle in human neurons
Abstract
HSV-1 is increasingly implicated in Alzheimers disease, yet the mechanisms by which it reshapes neuronal metabolism remain incompletely understood. Here, we demonstrate that HSV-1 co-opts peroxisomal biogenesis and lipid metabolic pathways to promote its replication across human neuronal models. In SH-SY5Y cells, infection triggers a marked expansion of the peroxisomal compartment and alters organelle morphology through upregulation of PGC-1 and PEX13/14/19. Pharmacological stimulation of peroxisome proliferation enhances viral production, whereas inhibition of PEX3-PEX19-dependent biogenesis almost completely suppresses infection. Lipidomic profiling reveals a selective increase in peroxisome-derived plasmalogens and sphingolipids, supporting a role for peroxisomes as a metabolic hub for viral envelopment. This remodeling is recapitulated in hiPSC-derived neurons and human brain organoids, where it is strictly dependent on productive replication and re-emerges upon viral reactivation, but not during latency. Collectively, these findings identify peroxisomes as essential replication-permissive organelles exploited by HSV-1 and suggest that recurrent virus-driven peroxisomal and ether-lipid reprogramming may contribute to neuronal vulnerability in neurodegenerative disease.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Filipponi, C., De Carli, A., Gane, I., Pignata, C., Iacono, E., Filippini, F., Sciandrone, G., Favaro, D., Wesesky, M. A., Freer, G., Pistello, M., D'Aiuto, L., Angelini, R., Lai, M.. 2026-06-24. Peroxisome dynamics during HSV-1 life cycle in human neurons. https://doi.org/10.64898/2026.06.23.732381
Cite the original work for its findings. Save a collection to share your selection of sources.