ArticleFrontiers in cellular neuroscience2023
Early Draper-mediated glial refinement of neuropil architecture and synapse number in the Drosophila antennal lobe.
Article in Frontiers in cellular neuroscience, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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10 citing papers in PubMed, 16 citations in OpenAlex.
- Selective lifelong suppression of an odor processing channel in response to critical period experience.eLife · 2026Article
- Immune crosstalk in Alzheimer's and Parkinson's disease: insights from Drosophila models into the brain-peripheral immune axis.Frontiers in immunology · 2026Review
- Neuron-to-glia signaling drives critical period experience-dependent synapse pruning.Scientific reports · 2025Article
- Glia phagocytose neuronal sphingolipids to infiltrate developing synapses.bioRxiv : the preprint server for biology · 2025Article
- Article
- Glial Regulation of Circuit Wiring, Firing, and Expiring in theCold Spring Harbor perspectives in biology · 2024Review
- Glia control experience-dependent plasticity in an olfactory critical period.bioRxiv : the preprint server for biology · 2024Article
- Experience-dependent serotonergic signaling in glia regulates targeted synapse elimination.PLoS biology · 2024Article
- Experience-dependent MAPK/ERK signaling in glia regulates critical period remodeling of synaptic glomeruli.Cellular signalling · 2024Article
- Experience-dependent glial pruning of synaptic glomeruli during the critical period.Scientific reports · 2024Article
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8 authors at 3 institutions in 1 country.
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Abstract
Glial phagocytic activity refines connectivity, though molecular mechanisms regulating this exquisitely sensitive process are incompletely defined. We developed the Drosophila antennal lobe as a model for identifying molecular mechanisms underlying glial refinement of neural circuits in the absence of injury. Antennal lobe organization is stereotyped and characterized by individual glomeruli comprised of unique olfactory receptor neuronal (ORN) populations. The antennal lobe interacts extensively with two glial subtypes: ensheathing glia wrap individual glomeruli, while astrocytes ramify considerably within them. Phagocytic roles for glia in the uninjured antennal lobe are largely unknown. Thus, we tested whether Draper regulates ORN terminal arbor size, shape, or presynaptic content in two representative glomeruli: VC1 and VM7. We find that glial Draper limits the size of individual glomeruli and restrains their presynaptic content. Moreover, glial refinement is apparent in young adults, a period of rapid terminal arbor and synapse growth, indicating that synapse addition and elimination occur simultaneously. Draper has been shown to be expressed in ensheathing glia; unexpectedly, we find it expressed at high levels in late pupal antennal lobe astrocytes. Surprisingly, Draper plays differential roles in ensheathing glia and astrocytes in VC1 and VM7. In VC1, ensheathing glial Draper plays a more significant role in shaping glomerular size and presynaptic content; while in VM7, astrocytic Draper plays the larger role. Together, these data indicate that astrocytes and ensheathing glia employ Draper to refine circuitry in the antennal lobe before the terminal arbors reach their mature form and argue for local heterogeneity of neuron-glia interactions.
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