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α-酮戊二酸通过代谢和表观遗传调控影响胚胎发育。

Alpha-ketoglutarate affects murine embryo development through metabolic and epigenetic modulations.

机构信息

National Engineering Laboratory for Animal Breeding, Key Laboratory of Animal Genetics and Breeding of the Ministry of Agriculture, Beijing Key Laboratory for Animal Genetic Improvement, College of Animal Science and Technology, China Agricultural University, Beijing, China.

Key Laboratory of Agricultural Animal Genetics, Breeding and Reproduction, Education Ministry of China, College of Animal Science and Technology, Huazhong Agricultural University, Wuhan, China.

出版信息

Reproduction. 2019 Aug 1;158(2):123-133. doi: 10.1530/REP-19-0018.

Abstract

α-Ketoglutarate (α-KG) is an intermediary metabolite in the tricarboxylic acid (TCA) cycle and functions to inhibit ATPase and maintain the pluripotency of embryonic stem cells (ESCs); however, little is known regarding the effects of α-KG on the development of preimplantation embryos. Herein, we report that α-KG (150 μM) treatment significantly promoted the blastocyst rate, the number of inner cell mass (ICM) cells and foetal growth after embryo transfer. Mechanistic studies revealed two important pathways involved in the α-KG effects on embryo development. First, α-KG modulates mitochondria function by inducing relatively low ATP production without modification of mitochondrial copy number. The relatively low energy metabolism preserves the pluripotency and competence of the ICM. Second, α-KG modifies epigenetics in embryos cultured in vitro by affecting the activity of the DNA demethylation enzyme TET and the DNA methylation gene Dnmt3a to increase the ratio of 5hmC/5mC ratio. Elevation of the 5hmC/5mC ratio not only promotes the pluripotency of the ICM but also leads to a methylation level in an in vitro embryo close to that in an in vivo embryo. All these functions of α-KG collectively contribute to an increase in the number of ICM cells, leading to greater adaptation of cultured embryos to in vitro conditions and promoting foetal growth after embryo transfer. Our findings provide basic knowledge regarding the mechanisms by which α-KG affects embryo development and cell differentiation.

摘要

α-酮戊二酸(α-KG)是三羧酸(TCA)循环中的中间代谢物,可抑制 ATP 酶并维持胚胎干细胞(ESCs)的多能性;然而,关于 α-KG 对植入前胚胎发育的影响知之甚少。在此,我们报告 α-KG(150 μM)处理可显著提高囊胚率、内细胞团(ICM)细胞数量和胚胎移植后的胎儿生长。机制研究揭示了 α-KG 对胚胎发育影响的两条重要途径。首先,α-KG 通过诱导相对较低的 ATP 产生而不改变线粒体拷贝数来调节线粒体功能。相对较低的能量代谢可保持 ICM 的多能性和能力。其次,α-KG 通过影响 DNA 去甲基化酶 TET 和 DNA 甲基化基因 Dnmt3a 的活性来改变体外培养胚胎的表观遗传学,从而增加 5hmC/5mC 比值。5hmC/5mC 比值的升高不仅促进了 ICM 的多能性,而且使体外胚胎的甲基化水平接近于体内胚胎。α-KG 的所有这些功能共同导致 ICM 细胞数量的增加,从而使培养胚胎更好地适应体外条件,并促进胚胎移植后的胎儿生长。我们的发现为 α-KG 影响胚胎发育和细胞分化的机制提供了基础知识。

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