Generation and Characterization of Induced Pluripotent Stem Cells Carrying An ASXL1 Mutation.
Wenjun WangXiaoru ZhangYunan LiJun ShenYihan LiWen XingJie BaiJun ShiYuan ZhouPublished in: Stem cell reviews and reports (2024)
Additional sex combs-like 1 (ASXL1) is an epigenetic modulator frequently mutated in myeloid malignancies, generally associated with poor prognosis. Current models for ASXL1-mutated diseases are mainly based on the complete deletion of Asxl1 or overexpression of C-terminal truncations in mice models. However, these models cannot fully recapitulate the pathogenesis of myeloid malignancies. Patient-derived induced pluripotent stem cells (iPSCs) provide valuable disease models that allow us to understand disease-related molecular pathways and develop novel targeted therapies. Here, we generated iPSCs from a patient with myeloproliferative neoplasm carrying a heterozygous ASXL1 mutation. The iPSCs we generated exhibited the morphology of pluripotent cells, highly expressed pluripotent markers, excellent differentiation potency in vivo, and normal karyotype. Subsequently, iPSCs with or without ASXL1 mutation were induced to differentiate into hematopoietic stem/progenitor cells, and we found that ASXL1 mutation led to myeloid-biased output and impaired erythroid differentiation. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) analyses showed that terms related to embryonic development, myeloid differentiation, and immune- and neural-related processes were most enriched in the differentially expressed genes. Western blot demonstrated that the global level of H2AK119ub was significantly decreased when mutant ASXL1 was present. Chromatin Immunoprecipitation Sequencing showed that most genes associated with stem cell maintenance were upregulated, whereas occupancies of H2AK119ub around these genes were significantly decreased. Thus, the iPSC model carrying ASXL1 mutation could serve as a potential tool to study the pathogenesis of myeloid malignancies and to screen targeted therapy for patients.
Keyphrases
- induced pluripotent stem cells
- poor prognosis
- genome wide
- dendritic cells
- bone marrow
- acute myeloid leukemia
- stem cells
- gene expression
- long non coding rna
- dna methylation
- end stage renal disease
- immune response
- risk assessment
- induced apoptosis
- signaling pathway
- case report
- high throughput
- diabetic rats
- mesenchymal stem cells
- peritoneal dialysis
- single molecule
- cell therapy
- cell cycle arrest
- stress induced
- high fat diet induced