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Dnmt3b 基因敲除导致子宫蜕膜化缺陷和胚胎植入失败。

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

机构信息

Laboratory of Reproductive Biology, School of Public Health and Management, Chongqing Medical University, Chongqing, 400016, China.

Joint International Research Laboratory of Reproduction & Development, Chongqing Medical University, Chongqing, China.

出版信息

Cell Biol Toxicol. 2023 Jun;39(3):1077-1098. doi: 10.1007/s10565-021-09664-3. Epub 2021 Nov 13.

Abstract

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 (Dnmt3b) female mice using progesterone receptor-Cre mice and examined the role of Dnmt3b during embryo implantation. Dnmt3b 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 Dnmt3b 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.

摘要

Dnmt3b 缺乏会损害蜕膜化,进而导致胚胎着床缺陷。分子技术的最新进展使得在胚胎着床过程中对表观遗传修饰进行前所未有的映射成为可能。DNA 甲基转移酶 3a(DNMT3A)和 DNMT3B 负责建立通过其在胚胎着床阶段和生殖细胞分化过程中的从头型 DNA 甲基化活性产生的 DNA 甲基化模式。有报道称,子宫中 Dnmt3a 的条件敲除不会显著影响胚胎着床期间的子宫内膜功能,但在胚胎着床期间,Dnmt3b 在子宫内膜中的组织特异性功能仍知之甚少,以研究 Dnmt3b 在着床前期间的作用。在这里,我们使用孕激素受体-Cre 小鼠生成了 Dnmt3b 条件敲除(Dnmt3b)雌性小鼠,并研究了 Dnmt3b 在胚胎着床期间的作用。Dnmt3b 雌性小鼠表现出生育能力受损,这与蜕膜化缺陷有关,但与子宫内膜容受性无关。此外,结果表明,Dnmt3b 的缺失不会导致早期妊娠蜕膜子宫内膜的基因组甲基化模式发生改变。对妊娠第 6 天小鼠子宫的转录组测序分析鉴定出磷酸甘油酸激酶 1(Pgk1)为 Dnmt3b 蜕膜子宫内膜中最具变异性的基因之一。PGK1 在早期妊娠蜕膜化过程中的潜在作用得到了证实。最后,通过过表达 Pgk1 可以逆转 Dnmt3b 下调引起的蜕膜化受损。总之,我们的研究结果表明,子宫中 Dnmt3b 的缺乏会损害蜕膜化,进而导致胚胎着床缺陷。

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