H3K27me3 is an Epigenetic Mark of Relevance in Endometriosis
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This study found that H3K27me3 levels and EZH2 expression are elevated in endometriotic lesions compared to patient eutopic endometrium, supporting the epigenetic mark's role in endometriosis pathogenesis.
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Abstract
Epigenetic mechanisms may play an important role in the etiology of endometriosis. The modification of histones by methylation of lysine residues has been shown to regulate gene expression by changing chromatin structure. We have previously shown that endometriotic lesions had aberrant levels of histone acetylation (lower) and methylation (higher) than control tissues. We aimed to determine the levels of trimethylated histone 3 at lysine residue 27 (H3K27me3), a well-known repressive mark, by immunoassay of fresh tissues and immunohistochemistry (IHC) of an endometriosis-focused tissue microarray. Also, we aimed to determine levels of expression of enhancer of zeste homolog 2 (EZH2), the enzyme responsible for trimethylation of H3K27me3, in cell lines. Average levels of H3K27me3 measured by immunoassay were not significantly different in lesions compared to endometrium from patients and controls. However, there was a trend of higher levels of H3K27me3 in secretory versus proliferative endometrium. The results of IHC showed that lesions (ovarian, fallopian, and peritoneal) and secretory endometrium from controls have higher percentage of H3K27me3-positive nuclei than eutopic endometrium from patients. Endometriotic epithelial cells express high levels of EZH2, which is upregulated by progesterone. This study provides evidence in support of a role of H3K27me3 in the pathogenesis of endometriosis and for EZH2 as a potential therapeutic target for this disease, but more studies are necessary to understand the molecular mechanisms at play.
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SciLite annotations
chemicals 19
lysine
lysine
progesterone
estrogen
progesterone
nucleotide
lysine
methyl
hormone
ampicillin
streptomycin
phenol red
sodium
pyruvate
sodium dodecanoate
sulfate
polyacrylamide macromolecule
polysorbate 20
haematoxylin
organisms 3
noordeloos 2009062
human
horseradish
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- europepmc
- last seen: 2026-09-30T06:18:36.089610+00:00
- pubmed
- last seen: 2026-05-13T22:17:58.238279+00:00
- scilite
- last seen: 2026-05-18T04:57:49.680383+00:00
- unpaywall
- last seen: 2026-05-14T19:30:52.867331+00:00
License: public-domain-us
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· attribution required
Courtesy of the U.S. National Library of Medicine
Courtesy of the U.S. National Library of Medicine