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Uterine deficiency of Dnmt3b impairs decidualization and causes consequent embryo implantation defects

蜕膜化 子宫内膜 DNA甲基化 胚胎 生物 男科 DNMT3B型 表观遗传学 内科学 内分泌学 细胞生物学 遗传学 医学 基因表达 基因
作者
Jing Long,Weike Li,Mengyue Chen,Yubin Ding,Xuemei Chen,Chao Tong,Na Li,Xueqing Liu,Junlin He,Chuan Peng,Yanqing Geng,Tai‐Hang Liu,Xinyi Mu,Fangfang Li,Yingxiong Wang,Rufei Gao
出处
期刊:Cell Biology and Toxicology [Springer Science+Business Media]
卷期号:39 (3): 1077-1098 被引量:7
标识
DOI:10.1007/s10565-021-09664-3
摘要

Uterine deficiency of Dnmt3b impairs decidualization and consequent embryo implantation defects. Recent advances in molecular technologies have allowed the unprecedented mapping of epigenetic modifications during embryo implantation. DNA methyltransferase 3a (DNMT3A) and DNMT3B are responsible for establishing DNA methylation patterns produced through their de novo-type DNA methylation activity in implantation stage embryos and during germ cell differentiation. It was reported that conditional knockout of Dnmt3a in the uterus does not markedly affect endometrial function during embryo implantation, but the tissue-specific functions of Dnmt3b in the endometrium during embryo implantation remain poorly understood to investigate the role of Dnmt3b during peri-implantation period. Here, we generated Dnmt3b conditional knockout (Dnmt3bd/d) female mice using progesterone receptor-Cre mice and examined the role of Dnmt3b during embryo implantation. Dnmt3bd/d female mice exhibited compromised fertility, which was associated with defective decidualization, but not endometrial receptivity. Furthermore, results showed loss of Dnmt3b did not lead to altered genomic methylation patterns of the decidual endometrium during early pregnancy. Transcriptome sequencing analysis of uteri from day 6 pregnant mice identified phosphoglycerate kinase 1 (Pgk1) as one of the most variable genes in Dnmt3bd/d decidual endometrium. Potential roles of PGK1 in the decidualization process during early pregnancy were confirmed. Lastly, the compromised decidualization upon the downregulation of Dnmt3b could be reversed by overexpression of Pgk1. Collectively, our findings indicate that uterine deficiency of Dnmt3b impairs decidualization and consequent embryo implantation defects.
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