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Isolation of Human Endometrial Stromal Cells for In Vitro Decidualization
Published on: September 1, 2018
Decreased NSD2 impairs stromal cell proliferation in human endometrium via reprogramming H3K36me2
Chuan-Mei Qin1,2,3, Xiao-Wei Wei4, Jia-Yi Wu1,2,3
1The International Peace Maternity and Child Health Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, China.
In Brief:
The proliferation of the endometrium is regulated by histone methylation. This study shows that decreased NSD2 impairs proliferative-phase endometrial stromal cell proliferation in patients with recurrent implantation failure via epigenetic reprogramming of H3K36me2 methylation on the promoter region of MCM7.
Abstract:
Recurrent implantation failure (RIF) is a formidable challenge in assisted reproductive technology because of its unclear molecular mechanism. Impaired human endometrial stromal cell (HESC) proliferation disrupts the rhythm of the menstrual cycle, resulting in devastating disorders between the embryo and the endometrium. The molecular function of histone methylation enzymes in modulating HESC proliferation remains largely uncharacterized. Herein, we found that the levels of histone methyltransferase nuclear receptor binding SET domain protein 2 (NSD2) and the dimethylation of lysine 36 on histone H3 are decreased significantly in the proliferative-phase endometrium of patients with RIF. Knockdown of NSD2 in an HESC cell line markedly impaired cell proliferation and globally reduced H3K36me2 binding to chromatin, leading to altered expression of many genes. Transcriptomic analyses revealed that cell cycle-related gene sets were downregulated in the endometrium of patients with RIF and in NSD2‑knockdown HESCs. Furthermore, RNA-sequencing and CUT&Tag sequencing analysis suggested that NSD2 knockdown reduced the binding of H3K36me2 to the promoter region of cell cycle marker gene MCM7 (encoding minichromosome maintenance complex component 7) and downregulated its expression. The interaction of H3K36me2 with the MCM7 promoter was verified using chromatin immunoprecipitation-quantitative real-time PCR. Our results demonstrated a unifying epigenome-scale mechanism by which decreased NSD2 impairs endometrial stromal cell proliferation in the proliferative-phase endometrium of patients with RIF.
Insights
Decreased nuclear receptor binding SET domain protein 2 (NSD2) impairs endometrial stromal cell proliferation in recurrent implantation failure (RIF) by altering H3K36me2 methylation at the MCM7 gene promoter.
Area of Science:
- Reproductive Biology
- Epigenetics
- Cellular Proliferation
Background:
- Recurrent implantation failure (RIF) presents a significant challenge in assisted reproductive technology due to poorly understood molecular mechanisms.
- Impaired human endometrial stromal cell (HESC) proliferation disrupts the endometrial-ovarian cycle, leading to embryo-endometrium asynchrony.
- The role of histone methylation enzymes in regulating HESC proliferation is largely unknown.
Purpose of the Study:
- To investigate the role of histone methyltransferase NSD2 and H3K36me2 methylation in the endometrial proliferation defects observed in RIF patients.
- To elucidate the epigenetic mechanisms underlying impaired HESC proliferation in RIF.
Main Methods:
- Quantification of NSD2 levels and H3K36me2 in RIF patient endometria.
- NSD2 knockdown in HESCs followed by global H3K36me2 assessment.
- Transcriptomic and RNA-sequencing analyses to identify affected genes and pathways.
- CUT&Tag sequencing and ChIP-qPCR to determine H3K36me2 binding at the MCM7 promoter.
Main Results:
- NSD2 and H3K36me2 levels are significantly decreased in the proliferative-phase endometrium of RIF patients.
- NSD2 knockdown in HESCs impairs cell proliferation and globally reduces H3K36me2.
- Cell cycle-related genes, including MCM7, are downregulated in RIF endometria and NSD2-knockdown HESCs.
- NSD2 knockdown reduces H3K36me2 binding to the MCM7 promoter, leading to decreased MCM7 expression.
Conclusions:
- Decreased NSD2 impairs proliferative-phase endometrial stromal cell proliferation in RIF patients via epigenetic reprogramming of H3K36me2 methylation at the MCM7 promoter.
- This study reveals a novel epigenome-scale mechanism contributing to RIF pathophysiology.
- Targeting NSD2 or H3K36me2 pathways may offer therapeutic strategies for RIF.
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