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恒河猴核移植胚胎干细胞神经分化过程中Oct4和Nanog调控区域的动态表观遗传调控

Dynamic epigenetic regulation of the Oct4 and Nanog regulatory regions during neural differentiation in rhesus nuclear transfer embryonic stem cells.

作者信息

Wang Kai, Chen Ying, Chang Eun-Ah, Knott Jason G, Cibelli Jose B

机构信息

Michigan State University , East Lansing, Michigan, USA.

出版信息

Cloning Stem Cells. 2009 Dec;11(4):483-96. doi: 10.1089/clo.2009.0019.

Abstract

Oct4 and Nanog are crucial for maintaining pluripotency in embryonic stem (ES) cells and early-stage embryos. In the present study, the status of DNA methylation and of histone modifications in the regulatory regions of Oct4 and Nanog in rhesus nuclear transfer-derived ES (ntES) cells was compared with in vitro fertilized embryo-derived ES (IVFES) cell counterparts. Dynamic changes in DNA methylation during differentiation into neural lineage were also monitored and correlated with mRNA abundance and protein levels of both genes. In ntES cells Oct4 exhibited mono-allelic methylation along with relatively lower mRNA levels, and its transcription was seen predominantly from the unmethylated allele. In contrast, in IVFES cells Oct4 was hypomethylated on both alleles and had relatively higher transcript levels, suggesting incomplete reprogramming of DNA methylation on the Oct4 gene following somatic cell nuclear transfer. During neuronal differentiation, Oct4 underwent biallelic methylation and reduced amounts of Oct4 mRNA were detected in both types of ES cells. Analysis of Nanog regulatory regions revealed that both alleles were hypomethylated and similar levels of Nanog transcripts were expressed in ntES cells and IVFES cells. During neuronal differentiation both alleles were methylated and reduced amounts of Nanog mRNA were detected. Other epigenetic modifications including histone 3 lysine 4, 9, and 27 trimethylation (H3K4me3, H3K9me3, and H3K27me3) showed similar patterns around the regulatory regions of Oct4 and Nanog in both kinds of ES cells. During neural differentiation, dramatic enrichment of H3K27me3 and H3K9me3 (repressive marks) was observed on Oct4 and Nanog regulatory regions. Differentiation of ntES and IVFES cells correlated with the silencing of Oct4 and Nanog, reactivation of the neural marker genes Pax6, N-Oct3, and Olig2, and dynamic changes in histone modifications in the upstream regions of Pax6 and N-Oct3. In short, although ES cells derived from somatic cell nuclear transfer showed a different epigenetic status in the Oct4 regulatory region than the IVF-derived counterparts, based on the parameters tested, the neural differentiation potential of ntES and IVFES cells is equivalent.

摘要

Oct4和Nanog对于维持胚胎干细胞(ES细胞)和早期胚胎的多能性至关重要。在本研究中,将恒河猴核移植来源的ES(ntES)细胞中Oct4和Nanog调控区域的DNA甲基化状态及组蛋白修饰状态,与体外受精胚胎来源的ES(IVFES)细胞进行了比较。还监测了向神经谱系分化过程中DNA甲基化的动态变化,并将其与这两个基因的mRNA丰度和蛋白水平相关联。在ntES细胞中,Oct4表现出单等位基因甲基化,同时mRNA水平相对较低,其转录主要来自未甲基化的等位基因。相反,在IVFES细胞中,Oct4的两个等位基因均为低甲基化,且转录水平相对较高,这表明体细胞核移植后Oct4基因的DNA甲基化重编程不完全。在神经元分化过程中,Oct4发生双等位基因甲基化,并且在两种类型的ES细胞中均检测到Oct4 mRNA的量减少。对Nanog调控区域的分析表明,ntES细胞和IVFES细胞中两个等位基因均为低甲基化,且Nanog转录本表达水平相似。在神经元分化过程中,两个等位基因均发生甲基化,且检测到Nanog mRNA的量减少。包括组蛋白3赖氨酸4、9和27三甲基化(H3K4me3、H3K9me3和H3K27me3)在内的其他表观遗传修饰,在两种ES细胞中Oct4和Nanog的调控区域周围呈现相似模式。在神经分化过程中,在Oct4和Nanog调控区域观察到H3K27me3和H3K9me3(抑制性标记)显著富集。ntES和IVFES细胞的分化与Oct4和Nanog的沉默、神经标记基因Pax6、N-Oct3和Olig2的重新激活以及Pax6和N-Oct3上游区域组蛋白修饰的动态变化相关。简而言之,尽管体细胞核移植来源的ES细胞在Oct4调控区域表现出与体外受精来源的ES细胞不同的表观遗传状态,但基于所测试的参数,ntES和IVFES细胞的神经分化潜能是等同的。

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