bioRxiv · 10.1101/2025.04.07.647560
Stress attenuation by the adrenergic-specific lncRNA NESPR prevents cell death in neuroblastoma cells
Abstract
Neuroblastoma is a pediatric cancer of the sympathetic nervous system characterized by heterogeneous cell states that mirror normal differentiation trajectories. Each state is governed by a core regulatory transcriptional circuitry that reinforces cell identity through an autoregulatory feedforward loop. We identified the long non-coding RNA NESPR as specifically expressed in adrenergic neuroblastoma cells. NESPR expression correlates with high-risk neuroblastoma clinical parameters and poor patient survival. NESPR is located within an insulated gene neighborhood alongside PHOX2B, a master transcription factor of the adrenergic identity. NESPR depletion reduced cell proliferation and increased caspase activity in neuroblastoma cell lines, and NESPR knockout in a neuroblastoma zebrafish model led to reduced tumor penetrance. Subcellular localization revealed NESPR to be a cytosolic long non-coding RNA, suggesting a trans-regulatory function. RNA-sequencing following NESPR depletion revealed a shift from an adrenergic to a mesenchymal cell state, due to proteotoxic stress-induced molecular reprogramming. These findings suggest NESPR as a regulator of neuroblastoma cell identity with potential therapeutic opportunities in high-risk neuroblastoma cases.
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Delhaye, L., Rombaut, D., de Bony, E. J., D'haene, E., Brazao, T. F., Depestel, L., Decaesteker, B., Van Haver, S., Martinez, R., Dipalo, L. L., Roels, J., Verniers, K., Yigit, N., Anckaert, J., Menten, B., Vergult, S., Van Vlierberghe, P., Roberts, S., Milazzo, G., Perini, G., Sanda, T., Speleman, F., Eyckerman, S., Mestdagh, P.. 2025-04-11. Stress attenuation by the adrenergic-specific lncRNA NESPR prevents cell death in neuroblastoma cells. https://doi.org/10.1101/2025.04.07.647560
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