EZH1 Q571R-mediated chromatin compaction and its oncogenic potential in thyroid cancer
Lee, C.-H.; Kim, H.; Kim, D.-G.; Ha, S.; Jang, J.-Y.; Vitorino, F. N. d. L.; Gongora, J. M.; Kim, W.; Oh, Y.; Park, G.; Kang, H.; Im, S.-H.; Jung, C. K.; Kim, S.-Y.; Jung, I.; Won, J.-k.; Garcia, B. A.; Kim, S.; Lee, K. E.; Ryu, J.-K.
Show abstract
Dysregulation of Polycomb Repressive Complex 2 (PRC2) is established to contribute to cancer. Of its catalytic subunits, EZH1 and EZH2, EZH2 mutations in cancer have been extensively identified and studied, but the role of EZH1 in cancer remains largely unexplored. The recurrent presence of the EZH1Q571R mutation in follicular thyroid cancer suggests its involvement in tumor progression. Using EZH1 ChIP-seq, ATAC-seq, and H3K27me3 CUT&Tag, we demonstrated that EZH1Q571R enhances chromatin binding and compaction and stimulates PRC2-EZH1 catalytic activity, leading to increased H3K27me3 levels and repression of tumor suppressor genes. Purified PRC2-EZH1Q571R demonstrated a significant increase in histone methyltransferase activity compared to PRC2-EZH1WT via enhanced nucleosome binding and DNA compaction. Notably, this effect is particularly observed with EZH1Q571R but only to a lesser extent with the corresponding EZH2Q570R mutation, highlighting it as an EZH1-specific mechanism. We additionally demonstrated PRC2-EZH1Q571R to efficiently methylate H3K27 in pre-existing H3K36me2/3 nucleosomes, disrupting chromatin homeostasis. Our findings provide key insights into the molecular pathogenesis of EZH1Q571R-driven follicular thyroid cancer.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Cancer-associated DNA Hypermethylation of Polycomb Targets Requires DNMT3A Dual Recognition of Histone H2AK119 Ubiquitination and the Nucleosome Acidic Patch 95%
- Select EZH2 inhibitors enhance the viral mimicry effects of DNMT inhibition through a mechanism involving calcium-calcineurin-NFAT signaling 95%
- Pronounced sequence specificity of the TET enzyme catalytic domain guides its cellular function 95%
Similar papers in this journal
- Extended and dynamic linker histone-DNA interactions control chromatosome compaction 95%
- H3 K27M and EZHIP impede H3K27-methylation spreading by inhibiting allosterically stimulated PRC2 95%
- Identification of molecular determinants of gene-specific bursting patterns by high-throughput imaging screens 95%
Similar papers in this journal
Similar papers in this journal
- Structural basis for PRC2 decoding of active histone methylation marks H3K36me2/3 95%
- Dynamic 1D Search and Processive Nucleosome Translocations by RSC and ISW2 Chromatin Remodelers 94%
- Monoallelically-expressed Noncoding RNAs form nucleolar territories on NOR-containing chromosomes and regulate rRNA expression 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.