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April 21, 2026Blood Cancer Discovery0 citations

MYST acetyltransferases interact with SETBP1 and are a targetable therapeutic vulnerability in SETBP1-mutant leukemia

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HCHanqian L. CarlsonTNThai T. NguyenOregon Health & Science UniversitySTSamantha TauchmannOregon Health & Science University

Key Points

  • This research aims to investigate the role of MYST acetyltransferases in SETBP1-mutant leukemia and explore their potential as therapeutic targets.
  • Conducted a proteomic screen to identify interactions with SETBP1
  • Utilized cell line and primary hematopoietic models to examine gene expression and histone modification
  • Administered MYST inhibitor PF-9363 in vivo to evaluate therapeutic efficacy against SETBP1-mutant leukemia in mice.
  • SETBP1 mutations led to increased MYST complex localization at target genes, enhancing gene expression
  • MYST inhibitors significantly reduced expression of genes in SETBP1D868N-expressing progenitors
  • In vivo treatment with PF-9363 resulted in improved survival and hematologic control in SETBP1-mutant leukemia models.

Abstract

Abstract Mutations in SETBP1 are associated with adverse prognosis in myeloid malignancies. These mutations stabilize SETBP1 protein, driving increased expression of a progenitor-associated gene expression program through incompletely described mechanisms. A proteomic screen revealed interactions between SETBP1 and MYST acetyltransferase complexes, including the catalytic subunits—KAT6A and KAT7. In cell line and primary hematopoietic models, mutant SETBP1 increased the localization of MYST complexes at known SETBP1 target genes, including the HOXA cluster, where they were shown to drive increased histone acetylation and gene expression. Treatment of SETBP1D868N-expressing myeloid progenitors with MYST inhibitors reduced target gene expression. To establish the efficacy of MYST inhibition in vivo, we treated mice harboring a syngeneic SETBP1-mutant leukemia with the clinical-grade MYST inhibitor—PF-9363. This resulted in hematologic control and increased survival. MYST inhibition was also highly effective against a SETBP1-mutant PDX model. These studies identify MYST acetyltransferases as promising therapeutic targets in SETBP1-mutant malignancies.

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Cite This Study

Carlson et al. (2026) studied this question.

synapsesocial.com/papers/69e713fdcb99343efc98d63fhttps://doi.org/10.1158/2643-3230.bcd-25-0446
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