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September 5, 2025Scientific Reports4 citationsOpen Access

Combinatorial DNMTs and EZH2 inhibition reprograms the H3K27me3 and DNAme-mediated onco-epigenome to suppress multiple myeloma proliferation

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APAlba Atienza PárragaPNPatrick NylundKDKlev Diamanti

Key Points

  • Combined inhibition of DNMTs and EZH2 significantly suppresses multiple myeloma cell proliferation, inducing apoptosis.
  • Primary multiple myeloma samples exhibited global DNA hypomethylation while specific hypermethylation was found at key gene regulatory regions.
  • Utilizing methods like ChIP-seq and RNA-seq allowed us to document extensive alterations in chromatin states linked to tumor gene activity.
  • These findings highlight the interaction between DNA methylation and H3K27me3 silencing mechanisms in driving cancer progression.

Abstract

Comprehensive epigenomic studies in multiple myeloma (MM) that unravel the connections between major epigenetic regulators, their intertwined collaboration and the potential of combinatorial targeting remain limited. Utilizing ChIP-seq, ATAC-seq, RNA-seq, and DNA methylation (DNAme) data, we generated whole-genome chromatin annotations from normal plasma cells and MM patients, revealing epigenomic re-configuration affecting downstream genes involved in tumour growth and survival. Primary MM samples showed global DNA hypomethylation but site-specific hypermethylation was observed at transcription start sites, promoters, and enhancers. Moreover, increased deposition of H3K27me3 was observed in clinically relevant functional chromatin clusters. Combined EZH2 and DNMTs inhibition resulted in extensive epigenomic alterations activating apoptosis and cell cycle genes, leading to increased G2/M arrest and apoptosis in MM cell lines. Our findings provide novel insights into the role of epigenetic gene silencing in MM tumorigenesis and the interplay between the Polycomb repressive complex 2 and DNAme.

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Cite This Study

Párraga et al. (2025) studied this question.

synapsesocial.com/papers/68bb3a432b87ece8dc955401https://doi.org/10.1038/s41598-025-17093-z
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