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Published on: October 17, 2025
PRDM16 expression is an independent prognostic factor in AML with the double-mutant NPM1/FLT3-ITD genotype
Sebastian Stasik1, Jan-Niklas Eckardt1, Christoph Röllig1
1Medizinische Klinik und Poliklinik I, Medizinische Fakultät Carl Gustav Carus, Technische Universität Dresden, Dresden, Germany.
Abstract:
PRDM16 (PR Domain Containing 16) is a transcription factor that plays a critical role in hematopoietic stem cell maintenance. In acute myeloid leukemia (AML), PRDM16 overexpression is linked to specific cytogenetic risk groups and poor prognosis. However, in NPM1-mutated AMLs, PRDM16 expression varies widely, with no consensus on its prognostic significance. To understand molecular and clinical associations of PRDM16 expression in this relevant subgroup, we screened 503 adult NPM1-mutant AML patients. High PRDM16 expression was associated with mutations in DNMT3A (57% vs 22%; p < 0.0001) and FLT3-ITD (51% vs 37%; p = 0.0258), and therefore a higher rate of ELN2022 intermediate-risk (42% vs 26%; p = 0.01), compared to low PRDM16 expression. Accordingly, PRDM16 overexpression was not associated with clinical outcome in multivariable analysis adjusting for ELN2022 risk in the unselected NPM1-mutant AML cohort. However, within the double-mutant NPM1/FLT3-ITD subgroup (n = 200), low PRDM16 expression was an independent prognostic factor for longer survival (hazard ratio [95%-CI] 0.467 [0.270-0.807]; p = 0.006). On a molecular level, low PRDM16 expression was associated with mutations in epigenetic regulators (TET2, IDH1/2) and increased PRDM16 promoter methylation, suggesting impaired TET/IDH-mediated DNA-demethylation as underlying mechanism. Notably, IDH1 R132C and IDH2 R140Q alterations particularly contributed to higher PRDM16 promoter methylation and reduced expression. These results suggest an association of PRDM16 overexpression with the NPM1/FLT3-ITD/DNMT3A triple-mutant AML genotype, typically linked to high leukemia stem cell frequencies and poor prognosis. Importantly, within this adverse AML subtype low PRDM16 expression is an independent prognostic marker for favorable outcome, supporting an anti-leukemic mechanism in AMLs with repressed PRDM16 transcription.
Insights
PRDM16 expression impacts acute myeloid leukemia (AML) outcomes. In NPM1-mutated AML, low PRDM16 predicts better survival in double mutants, suggesting an anti-leukemic role when transcription is repressed.
Area of Science:
- Hematology
- Molecular Biology
- Cancer Genetics
Background:
- PRDM16 is crucial for hematopoietic stem cell maintenance.
- PRDM16 overexpression correlates with poor prognosis in certain acute myeloid leukemia (AML) subtypes.
- Its role in NPM1-mutated AML remains unclear, showing variable expression and uncertain prognostic significance.
Purpose of the Study:
- To investigate the molecular and clinical associations of PRDM16 expression in adult NPM1-mutated AML patients.
- To clarify the prognostic value of PRDM16 in this specific AML subgroup.
Main Methods:
- Screening of 503 adult NPM1-mutant AML patients.
- Analysis of PRDM16 expression in relation to genetic mutations (DNMT3A, FLT3-ITD, TET2, IDH1/2) and ELN2022 risk categories.
- Multivariable analysis to assess prognostic significance, particularly in the NPM1/FLT3-ITD subgroup.
- Investigation of PRDM16 promoter methylation and its correlation with epigenetic regulators.
Main Results:
- High PRDM16 expression associated with DNMT3A and FLT3-ITD mutations, and ELN2022 intermediate-risk.
- PRDM16 overexpression lacked prognostic significance in the overall NPM1-mutant AML cohort.
- Low PRDM16 expression independently predicted longer survival in the NPM1/FLT3-ITD subgroup.
- Low PRDM16 expression linked to epigenetic regulator mutations and increased promoter methylation, suggesting impaired DNA demethylation.
Conclusions:
- PRDM16 overexpression may associate with the NPM1/FLT3-ITD/DNMT3A triple-mutant AML genotype.
- Low PRDM16 expression serves as an independent prognostic marker for favorable outcome within the adverse NPM1/FLT3-ITD AML subtype.
- Repressed PRDM16 transcription may exert an anti-leukemic effect in specific AML contexts.
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