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Clonal Haematopoiesis-related Mutant ASXL1 Promotes Atherosclerosis in Mice via Dysregulated Innate Immunity [scRNA-seq]

GSE279601 Mus musculus Expression profiling by high throughput sequencing 4 samples Submitted 2024/10/25 Platform GPL19057
Summary
Certain somatic mutations confer a fitness advantage in hematopoietic stem cells, resulting in the clonal expansion of mutant blood cells, known as clonal haematopoiesis (CH). Among the top 3 CH mutations, ASXL1 mutations present the highest risk for developing cardiovascular diseases (CVDs). However, how ASXL1 mutations induce CVDs remains totally elusive. Here we show that haematopoietic cells harbouring C-terminally truncated form of ASXL1 mutant (ASXL1-MT) accelerated development of atherosclerosis in Ldlr–/– mice. Transcriptome analyses of plaque-cells showed inflammatory signatures of monocytes and macrophages expressing ASXL1-MT. Mechanistically, wild-type ASXL1 inhibited innate immune signalling through the inhibition of IRAK1-TAK1 interaction in the cytoplasm, indicating an unexpected non-epigenetic role of ASXL1. In contrast, ASXL1-MT lost this regulatory function, leading to NF-κB activation. Intriguingly, IRAK1/4 inhibition decreased inflammatory monocytes and atherosclerosis driven by ASXL1-MT. The present work connects ASXL1 mutations with inflammation and CVDs, giving a clue to prevent CVDs in ASXL1-CH.
Published in
Clonal hematopoiesis-related mutant ASXL1 promotes atherosclerosis in mice via dysregulated innate immunity
Sato N, Goyama S, Chang YH et al. · Nature cardiovascular research 2024 · PMID 39653824 · doi:10.1038/s44161-024-00579-w
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Also filed as BioProject PRJNA1173577 and SRA study SRP538894. Searching any of these in the dataset finder brings you back here.

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