Microglial plasticity governed by state-specific enhancer landscapes
Hamagami, N.; Kapadia, D.; Abduljawad, N.; Cheng, Z.; McLaughlin, L.; Singhania, D.; Barclay, K.; Yang, J.; Sun, Z.; Bayguinov, P.; Yu, G.; Gabel, H.; Li, Q.
Show abstract
Single-cell transcriptomic studies have identified distinct microglial subpopulations with shared and divergent gene signatures across development, aging and disease. Whether these microglial subsets represent ontogenically separate lineages of cells, or they are manifestations of plastic changes of microglial states downstream of some converging signals is unknown. Furthermore, despite the well-established role of enhancer landscapes underlying the identity of microglia, to what extent histone modifications and DNA methylation regulate microglial state switches at enhancers have not been defined. Here, using genetic fate mapping, we demonstrate the common embryonic origin of proliferative-region-associated microglia (PAM) enriched in developing white matter, and track their dynamic transitions into disease-associated microglia (DAM) and white matter-associated microglia (WAM) states in disease and aging contexts, respectively. This study links spatiotemporally discrete microglial states through their transcriptomic and epigenomic plasticity, while revealing state-specific histone modification profiles that govern state switches in health and disease.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Natural genetic variation determines microglia heterogeneity in wild-derived mouse models of Alzheimer's disease 97%
- Applying high-resolution spatial transcriptomics to characterise the amyloid plaque cell niche in Alzheimer's Disease 96%
- Triglyceride metabolism controls inflammation and APOE4-associated disease states in microglia 96%
Similar papers in this journal
- Brain-Engrafted Monocyte-derived Macrophages from Blood and Skull-Bone Marrow Exhibit Distinct Identities from Microglia 96%
- Alzheimer's disease-linked risk alleles elevate microglial cGAS-associated senescence and neurodegeneration in a tauopathy model 96%
- The Alzheimers Disease Risk Genes MS4A4A And MS4A6A Cooperate to Negatively Regulate Trem2 and Microglia states 96%
Similar papers in this journal
Similar papers in this journal
- High throughput identification of genetic regulators of microglial inflammatory processes in Alzheimer's disease 96%
- Tracking changes in functionality and morphology of repopulated microglia in young and old mice 95%
- IRF3 regulates neuroinflammatory responses and the expression of genes associated with Alzheimer's disease. 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.