ArticleBlood cancer discovery2024
Mis-splicing of Mitotic Regulators Sensitizes SF3B1-Mutated Human HSCs to CHK1 Inhibition.
Article in Blood cancer discovery, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed.
- Sensitivity to ATR-CHK1 pathway inhibition in MDS/AML is enhanced by SRSF2 mutations and reduced by RUNX1 loss.Leukemia · 2026Article
- Modeling myeloid cell development in health and disease using induced pluripotent stem cells.Frontiers in immunology · 2026Review
- SF3B1-mutant models of RNA mis-splicing uncover UBA1 as a therapeutic target in myelodysplastic neoplasms.Leukemia · 2025Article
- Sensitivity to ATR-CHK1 pathway inhibition in AML/MDS is enhanced bybioRxiv : the preprint server for biology · 2025Article
- SF3B1K700E Neoantigen Is a CD8+ T-cell Target Shared across Human Myeloid Neoplasms.Cancer immunology research · 2025Article
- Article
- Distinct routes of clonal progression in SF3B1-mutant myelodysplastic syndromes.Blood advances · 2025Article
- Alternative splicing in stem cells and development: research progress and emerging technologies.Cell regeneration (London, England) · 2025Review
- Low-risk MDS-A spotlight on precision medicine forHemaSphere · 2025Review
- Understanding Human Oncogene Function and Cooperativity in Myeloid Malignancy Using iPSCs.Experimental hematology · 2025Review
- LNC_000280 could be a new positive factor in the proliferation and differentiation of myoblasts: A prospective study.PloS one · 2024Article
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Authors and funding
14 authors.
Funding
Abstract
Splicing factor SF3B1 mutations are frequent somatic lesions in myeloid neoplasms that transform hematopoietic stem cells (HSCs) by inducing mis-splicing of target genes. However, the molecular and functional consequences of SF3B1 mutations in human HSCs and progenitors (HSPCs) remain unclear. Here, we identify the mis-splicing program in human HSPCs as a targetable vulnerability by precise gene editing of SF3B1 K700E mutations in primary CD34+ cells. Mutant SF3B1 induced pervasive mis-splicing and reduced expression of genes regulating mitosis and genome maintenance leading to altered differentiation, delayed G2/M progression, and profound sensitivity to CHK1 inhibition (CHK1i). Mis-splicing or reduced expression of mitotic regulators BUBR1 and CDC27 delayed G2/M transit and promoted CHK1i sensitivity. Clinical CHK1i prexasertib selectively targeted SF3B1-mutant immunophenotypic HSCs and abrogated engraftment in vivo. These findings identify mis-splicing of mitotic regulators in SF3B1-mutant HSPCs as a targetable vulnerability engaged by pharmacological CHK1 inhibition. Significance: In this study, we engineer precise SF3B1 mutations in human HSPCs and identify CHK1 inhibition as a selective vulnerability promoted by mis-splicing of mitotic regulators. These findings uncover the mis-splicing program induced by mutant SF3B1 in human HSPCs and show that it can be therapeutically targeted by clinical CHK1 inhibitors.
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