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Isolation of Region-specific Microglia from One Adult Mouse Brain Hemisphere for Deep Single-cell RNA Sequencing
Published on: December 3, 2019
Spatial transcriptomics revealed the regulatory role of CCN1 to microglia distribution through region-specific
Zhile Bai1, Zhanhe Chang1, Shuguang Wang1
1State Key Laboratory of Cardiology and Medical Innovation Center, Department of Reproductive Medicine Center, Shanghai East Hospital, Frontier Science Center for Stem Cell Research, School of Life Sciences and Technology, Tongji University, Shanghai 200092, China.
Abstract:
During brain development, neural stem progenitor cells (NSPCs) and microglia interact within precise spatial niches; however, decoding mechanism is full of challenges using traditional analytical techniques. Here, we investigated the role of CCN1, a secreted protein enriched in NSPCs, using CNS-specific Ccn1 knockout mice. Through single cell RNA-seq analysis, we found that microglia were significantly reduced in the ventricular zone (VZ) at E17.5 and P2, with elevated expression of autophagy- and activation-related genes in Ccn1-CKO mice. Spatial transcriptomics at P2 further showed that Ccn1 deletion region-specific redistributes microglia and leads to increased microglial aggregation and activation in the rostral lateral septum (LSR), alongside reductions in the VZ. Mechanistically, Ccn1 deletion in NSCs led to region-specific dysregulation of the key signaling ligands, Csf1 and Il2. We found the elevated expression of Csf1 and Il2 specifically within the LSR region, which corresponded to the up-regulation of their respective receptors (Csf1r, Cd53) and downstream targets (Spp1, Ctsb) in LSR microglia, affecting microglial status. Our study reveals a region-specific NSC-microglia interaction regulated by Ccn1, offering a new paradigm for understanding multicellular dynamics in brain development.
