bioRxiv · 10.1101/2025.09.03.673940
An Innate Immune Receptor Toll-1 converts chronic light stress into glial phagocytosis
Abstract
Chronic stress can cause progressive neuronal degeneration, yet the molecular mechanisms linking stress sensing to neuroimmune responses remain elusive. In this study, using a Drosophila model of chronic light-induced stress, we show that photoreceptor neurons accumulate reactive oxygen species (ROS) and exhibit Toll-1 activation which involves Spatzle ligands and receptor endocytosis. Toll-1 activation in neurons promotes axonal degeneration by inducing expression of the glial phagocytic receptor Draper (Drpr), leading to the engulfment of stressed axons. Genetic interaction analyses indicate that Toll-1 functions upstream of Drpr in a stress-responsive signaling cascade. Blocking either Toll-1 or Drpr attenuates axon loss under light stress, while Toll-1 overexpression exacerbates it. Toll-1 also plays a similar pro-degenerative role in an activity-dependent olfactory neuron degeneration paradigm, pointing to a broader role for this mechanism in neural degeneration. Together, these findings identify a neuron-glia signaling axis that converts sustained stress into structural degeneration.
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Osaka, J., Ichinose, T., Kanno, M., Suzuki, T., Hakeda-Suzuki, S., Sugie, A.. 2025-09-08. An Innate Immune Receptor Toll-1 converts chronic light stress into glial phagocytosis. https://doi.org/10.1101/2025.09.03.673940
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