Synaptic dysfunction is a hallmark of neurodevelopmental disorders (NDDs), often linked to genes involved in cytoskeletal regulation. While the role of these genes has been extensively studied in neurons, microglial functions such as phagocytosis are also dependent on cytoskeletal dynamics. We demonstrate that disturbance of actin cytoskeletal regulation in microglia, modeled by genetically impairing the scaffold protein Disrupted-in-Schizophrenia 1 (DISC1), which integrates actin-binding proteins, causes a shift in actin regulatory balance favoring filopodial versus lamellipodial actin organization. The resulting microglia-specific dysregulation of actin dynamics leads to excessive uptake of synaptic proteins. Genetically engineered DISC1-deficient mice show diminished hippocampal excitatory transmission and associated spatial memory deficits. Reintroducing wild-type microglia-like cells via bone marrow transplantation in adult DISC1-deficient mice restores the synaptic function of neurons and rescues cognitive performance. These findings reveal a pivotal role for microglial actin cytoskeletal remodeling in preserving synaptic integrity and cognitive health. Targeting microglial cytoskeletal dynamics may effectively address cognitive impairments associated with NDDs, even in adulthood.
Cytoskeletal control in adult microglia is essential to restore neurodevelopmental synaptic and cognitive deficits.
成年小胶质细胞的细胞骨架控制对于恢复神经发育突触和认知缺陷至关重要
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作者:Kessels Sofie, Trippaers Chloë, Mertens Melanie, Hamad Ibrahim, Rombaut Ben, Janssen Art, Ramanathan Keerthana, Duwé Sam, Gharghani Adelaïde M, Theuwis Rune, Delbroek Amber, Vangansewinkel Tim, Berden Lisa, Beeken Jolien, Vandormael Patrick, Poovathingal Suresh, Voets Thomas, Kleinewietfeld Markus, Nguyen Laurent, Antel Jack P, Healy Luke M, Cowley Sally A, Ishizuka Koko, Rigo Jean-Michel, Hendrix Jelle, Vanmierlo Tim, Dewachter Ilse, Alpizar Yeranddy A, Sawa Akira, Brône Bert
| 期刊: | Science Advances | 影响因子: | 12.500 |
| 时间: | 2025 | 起止号: | 2025 Aug 29; 11(35):eadw0128 |
| doi: | 10.1126/sciadv.adw0128 | 研究方向: | 神经科学 |
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