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Acute Myeloid Leukemia with deletion 5q is an epigenetically distinct subgroup defined by heterozygous loss of KDM3B

Kelly, K.; Welte, L.; Sollier, E.; Riedel, A.; Browne-Burke, F.; Scherer, M.; Keer, H. N.; Azab, M.; Jahn, E.; Doehner, H.; Doehner, K.; Lutsik, P.; Plass, C.

2024-11-15 cancer biology
10.1101/2024.11.13.623380 bioRxiv
Show abstract

Acute myeloid leukemia (AML) is a hematological malignancy characterized by a block in differentiation and accelerated proliferation of myeloid progenitor cells. Genes encoding for epigenetic regulators are among the most frequent targets for mutations and structural variations in AML, giving rise to profound epigenetic heterogeneity between and within tumors. Deletions of chromosome 5q [del(5q)] are among the most common copy number alterations in AML and are associated with extremely poor clinical outcome and therapy resistance, however the mechanisms linking del(5q) to leukemic progression are not understood. Analyzing DNA methylation profiles from 477 elderly AML patients using DNA methylome deconvolution, we discovered that del(5q) AML is an epigenetically distinct subgroup characterized by a signature of DNA hypermethylation, which we propose may be linked to dysregulation of H3K9me1/2 and overexpression of the leukemic stem cell marker, DNMT3B. Interrogation of the minimally deleted 5q region highlighted the H3K9me1/2 demethylase KDM3B as a likely target for haploinsufficiency in this subgroup. Our data suggest that del(5q) AML should be reconsidered as an epigenetically dysregulated subgroup, driven by heterozygous loss of KDM3B, and that the resulting imbalance of H3K9me1/2 may contribute to the progression of these aggressive leukemias.

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