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染色质重塑因子 SMARCA5 在小鼠和牛早期胚胎中的功能作用。

Functional roles of the chromatin remodeler SMARCA5 in mouse and bovine preimplantation embryos†.

机构信息

Laboratory of Mammalian Molecular Embryology, College of Animal Sciences, Assisted Reproduction Unit, Department of Obstetrics and Gynecology, Sir Run Run Shaw Hospital, School of Medicine, Zhejiang University, Hangzhou, Zhejiang, People's Republic of China.

出版信息

Biol Reprod. 2021 Aug 3;105(2):359-370. doi: 10.1093/biolre/ioab081.

Abstract

Upon fertilization, extensive chromatin reprogramming occurs during preimplantation development. Growing evidence reveals species-dependent regulations of this process in mammals. ATP-dependent chromatin remodeling factor SMARCA5 (also known as SNF2H) is required for peri-implantation development in mice. However, the specific functional role of SMARCA5 in preimplantation development and if it is conserved among species remain unclear. Herein, comparative analysis of public RNA-seq datasets reveals that SMARCA5 is universally expressed during oocyte maturation and preimplantation development in mice, cattle, humans, and pigs with species-specific patterns. Immunostaining analysis further describes the temporal and spatial changes of SMARCA5 in both mouse and bovine models. siRNA-mediated SMARCA5 depletion reduces the developmental capability and compromises the specification and differentiation of inner cell mass in mouse preimplantation embryos. Indeed, OCT4 is not restricted into the inner cell mass and the formation of epiblast and primitive endoderm disturbed with reduced NANOG and SOX17 in SMARCA5-deficient blastocysts. RNA-seq analysis shows SMARCA5 depletion causes limited effects on the transcriptomics at the morula stage, however, dysregulates 402 genes, including genes involved in transcription regulation and cell proliferation at the blastocyst stage in mice. By comparison, SMARCA5 depletion does not affect the development through the blastocyst stage but significantly compromises the blastocyst quality in cattle. Primitive endoderm formation is greatly disrupted with reduced GATA6 in bovine blastocysts. Overall, our studies demonstrate the importance of SMARCA5 in fostering the preimplantation development in mice and cattle while there are species-specific effects.

摘要

受精后,在胚胎着床前发育过程中会发生广泛的染色质重编程。越来越多的证据表明,在哺乳动物中,这一过程存在物种依赖性调控。ATP 依赖性染色质重塑因子 SMARCA5(也称为 SNF2H)是小鼠胚胎着床前发育所必需的。然而,SMARCA5 在胚胎着床前发育中的具体功能作用以及它是否在物种间保守尚不清楚。在此,通过对公共 RNA-seq 数据集的比较分析发现,SMARCA5 在小鼠、牛、人和猪的卵母细胞成熟和胚胎着床前发育过程中普遍表达,具有物种特异性模式。免疫染色分析进一步描述了 SMARCA5 在小鼠和牛模型中的时空变化。siRNA 介导的 SMARCA5 耗竭降低了小鼠胚胎着床前胚胎的发育能力,并损害了内细胞团的特化和分化。事实上,OCT4 并没有被限制在内细胞团中,并且由于 SMARCA5 缺陷的囊胚中 NANOG 和 SOX17 的减少,内胚层和原始内胚层的形成受到干扰。RNA-seq 分析表明,SMARCA5 耗竭在桑葚胚阶段对转录组学的影响有限,但在囊胚阶段会失调 402 个基因,包括参与转录调控和细胞增殖的基因。相比之下,SMARCA5 耗竭并不影响胚胎通过囊胚阶段,但在牛中显著损害囊胚质量。牛囊胚中 GATA6 的减少导致原始内胚层的形成严重受损。总之,我们的研究表明,SMARCA5 在促进小鼠和牛的胚胎着床前发育中非常重要,而在物种间存在特异性影响。

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