Deletion of Asxl1 results in myelodysplasia and severe developmental defects in vivo

Asxl1 缺失会导致骨髓发育不良和体内严重发育缺陷

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作者:Omar Abdel-Wahab, Jie Gao, Mazhar Adli, Anwesha Dey, Thomas Trimarchi, Young Rock Chung, Cem Kuscu, Todd Hricik, Delphine Ndiaye-Lobry, Lindsay M Lafave, Richard Koche, Alan H Shih, Olga A Guryanova, Eunhee Kim, Sheng Li, Suveg Pandey, Joseph Y Shin, Leon Telis, Jinfeng Liu, Parva K Bhatt, Sebastien

Abstract

Somatic Addition of Sex Combs Like 1 (ASXL1) mutations occur in 10-30% of patients with myeloid malignancies, most commonly in myelodysplastic syndromes (MDSs), and are associated with adverse outcome. Germline ASXL1 mutations occur in patients with Bohring-Opitz syndrome. Here, we show that constitutive loss of Asxl1 results in developmental abnormalities, including anophthalmia, microcephaly, cleft palates, and mandibular malformations. In contrast, hematopoietic-specific deletion of Asxl1 results in progressive, multilineage cytopenias and dysplasia in the context of increased numbers of hematopoietic stem/progenitor cells, characteristic features of human MDS. Serial transplantation of Asxl1-null hematopoietic cells results in a lethal myeloid disorder at a shorter latency than primary Asxl1 knockout (KO) mice. Asxl1 deletion reduces hematopoietic stem cell self-renewal, which is restored by concomitant deletion of Tet2, a gene commonly co-mutated with ASXL1 in MDS patients. Moreover, compound Asxl1/Tet2 deletion results in an MDS phenotype with hastened death compared with single-gene KO mice. Asxl1 loss results in a global reduction of H3K27 trimethylation and dysregulated expression of known regulators of hematopoiesis. RNA-Seq/ChIP-Seq analyses of Asxl1 in hematopoietic cells identify a subset of differentially expressed genes as direct targets of Asxl1. These findings underscore the importance of Asxl1 in Polycomb group function, development, and hematopoiesis.

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