A microglia clonal inflammatory disorder in Alzheimer's Disease.
Rocio VicarioStamatina FragkogianniLeslie WeberTomi LazarovYang HuSamantha Y HayashiBarbara P CraddockNicholas D SocciAraitz AlberdiAnn BaakoOyku AyMasato OgishiEstibaliz Lopez-RodrigoRajya KappagantulaAgnes VialeChristine A Iacobuzio-DonahueTing ZhouRichard M RansohoffRichard Chesworthnull nullOmar Abdel-WahabBertrand BoissonOlivier ElementoJean-Laurent CasanovaW Todd MillerFrederic GeissmannPublished in: bioRxiv : the preprint server for biology (2024)
Somatic genetic heterogeneity resulting from post-zygotic DNA mutations is widespread in human tissues and can cause diseases, however few studies have investigated its role in neurodegenerative processes such as Alzheimer's Disease (AD). Here we report the selective enrichment of microglia clones carrying pathogenic variants, that are not present in neuronal, glia/stromal cells, or blood, from patients with AD in comparison to age-matched controls. Notably, microglia-specific AD-associated variants preferentially target the MAPK pathway, including recurrent CBL ring-domain mutations. These variants activate ERK and drive a microglia transcriptional program characterized by a strong neuro-inflammatory response, both in vitro and in patients. Although the natural history of AD-associated microglial clones is difficult to establish in human, microglial expression of a MAPK pathway activating variant was previously shown to cause neurodegeneration in mice, suggesting that AD-associated neuroinflammatory microglial clones may contribute to the neurodegenerative process in patients. One-Sentence Summary: A subset of Alzheimer Disease patients carry mutant microglia somatic clones which promote neuro-inflammation.
Keyphrases
- inflammatory response
- end stage renal disease
- neuropathic pain
- chronic kidney disease
- lipopolysaccharide induced
- oxidative stress
- ejection fraction
- newly diagnosed
- signaling pathway
- copy number
- endothelial cells
- lps induced
- gene expression
- prognostic factors
- peritoneal dialysis
- type diabetes
- cognitive decline
- high resolution
- blood brain barrier
- mild cognitive impairment
- spinal cord
- mass spectrometry
- single cell
- insulin resistance
- circulating tumor cells
- circulating tumor
- nucleic acid
- binding protein
- heat shock