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转录因子调控 naïve 多能性网络中细胞周期蛋白 E 在小鼠胚胎干细胞中的表达。

Regulation of Cyclin E by transcription factors of the naïve pluripotency network in mouse embryonic stem cells.

机构信息

Stem Cell and Brain Research Institute, Univ Lyon, Université Lyon 1, Inserm , Bron , France.

出版信息

Cell Cycle. 2019 Oct;18(20):2697-2712. doi: 10.1080/15384101.2019.1656475. Epub 2019 Aug 28.

Abstract

Continuous, non-cell cycle-dependent expression of cyclin E is a characteristic feature of mouse embryonic stem cells (mESCs). We studied the 5' regulatory region of , also known as , and identified binding sites for transcription factors of the naïve pluripotency network, including Esrrb, Klf4, and Tfcp2l1 within 1 kilobase upstream of the transcription start site. Luciferase assay and chromatin immunoprecipitation-quantitative polymerase chain reaction (ChiP-qPCR) study highlighted one binding site for Esrrb that is essential to transcriptional activity of the promoter region, and three binding sites for Klf4 and Tfcp2l1. Knockdown of Esrrb, Klf4, and Tfcp2l1 reduced expression whereas overexpression of Esrrb and Klf4 increased it, indicating a strong correlation between the expression level of these factors and that of cyclin E. We observed that cyclin E overexpression delays differentiation induced by Esrrb depletion, suggesting that cyclin E is an important target of Esrrb for differentiation blockade. We observed that mESCs express a low level of miR-15a and that transfection of a miR-15a mimic decreases mRNA level. These results lead to the conclusion that the high expression level of in mESCs can be attributed to transcriptional activation by Esrrb as well as to the absence of its negative regulator, miR-15a.

摘要

持续的、非细胞周期依赖性的细胞周期蛋白 E 表达是小鼠胚胎干细胞 (mESC) 的一个特征。我们研究了 的 5'调控区,也称为 ,并在转录起始位点上游 1 千碱基内鉴定到了 naïve 多能性网络转录因子的结合位点,包括 Esrrb、Klf4 和 Tfcp2l1。荧光素酶检测和染色质免疫沉淀-定量聚合酶链反应 (ChIP-qPCR) 研究强调了 Esrrb 的一个结合位点,该位点对于启动子区域的转录活性至关重要,并且 Klf4 和 Tfcp2l1 有三个结合位点。Esrrb、Klf4 和 Tfcp2l1 的敲低降低了 的表达,而过表达 Esrrb 和 Klf4 则增加了它的表达,这表明这些因子的表达水平与 cyclin E 的表达水平之间存在很强的相关性。我们观察到 cyclin E 的过表达延迟了 Esrrb 耗竭诱导的分化,这表明 cyclin E 是 Esrrb 用于分化阻断的一个重要靶标。我们观察到 mESC 表达低水平的 miR-15a,并且 miR-15a 模拟物的转染降低了 mRNA 水平。这些结果得出结论,mESC 中 的高表达水平归因于 Esrrb 的转录激活以及其负调节剂 miR-15a 的缺失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a05/6773236/5d6ab3a2d77e/kccy-18-20-1656475-g001.jpg

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