盼盼 (2024-11-30 22:11):
#paper doi:10.1101/2021.04.29.441889 Type I interferon responsive microglia shape cortical development and behavior. 在Cell杂志发表的这篇文章,研究人员发现了一类I型干扰素(IFN-Ⅰ)响应性的小胶质细胞亚群,这一类群的细胞在皮层重塑期间高度活跃,可发挥吞噬神经元的作用,而在正常大脑发育过程中罕见。实验结果还表明,IFN-Ⅰ缺陷小鼠在触觉刺激时表现出更高的敏感性,这说明IFN-Ⅰ可能参与调节触觉反应。总之,这一类独特的小胶质细胞在大脑皮层的发育和感觉功能中发挥重要作用,这些发现为理解IFN-Ⅰ在大脑对多种损伤反应过程中的作用提供了新的视角。
Type I interferon responsive microglia shape cortical development and behavior
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Abstract:
SummaryMicroglia are brain resident phagocytes that can engulf synaptic components and extracellular matrix as well as whole neurons. However, whether there are unique molecular mechanisms that regulate these distinct phagocytic states is unknown. Here we define a molecularly distinct microglial subset whose function is to engulf neurons in the developing brain. We transcriptomically identified a cluster of Type I interferon (IFN-I) responsive microglia that expanded 20-fold in the postnatal day 5 somatosensory cortex after partial whisker deprivation, a stressor that accelerates neural circuit remodeling.In situ, IFN-I responsive microglia were highly phagocytic and actively engulfed whole neurons. Conditional deletion of IFN-I signaling (Ifnar1fl/fl) in microglia but not neurons resulted in dysmorphic microglia with stalled phagocytosis and an accumulation of neurons with double strand DNA breaks, a marker of cell stress. Conversely, exogenous IFN-I was sufficient to drive neuronal engulfment by microglia and restrict the accumulation of damaged neurons. IFN-I deficient mice had excess excitatory neurons in the developing somatosensory cortex as well as tactile hypersensitivity to whisker stimulation. These data define a molecular mechanism through which microglia engulf neurons during a critical window of brain development. More broadly, they reveal key homeostatic roles of a canonical antiviral signaling pathway in brain development.
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