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OCT4和SOX2对nanog的转录调控。

Transcriptional regulation of nanog by OCT4 and SOX2.

作者信息

Rodda David J, Chew Joon-Lin, Lim Leng-Hiong, Loh Yuin-Han, Wang Bei, Ng Huck-Hui, Robson Paul

机构信息

Stem Cell and Developmental Biology and Gene Regulation Laboratory, Genome Institute of Singapore, Singapore 138672.

出版信息

J Biol Chem. 2005 Jul 1;280(26):24731-7. doi: 10.1074/jbc.M502573200. Epub 2005 Apr 27.

Abstract

Nanog, Sox2, and Oct4 are transcription factors all essential to maintaining the pluripotent embryonic stem cell phenotype. Through a cooperative interaction, Sox2 and Oct4 have previously been described to drive pluripotent-specific expression of a number of genes. We now extend the list of Sox2-Oct4 target genes to include Nanog. Within the Nanog proximal promoter, we identify a composite sox-oct cis-regulatory element essential for Nanog pluripotent transcription. This element is conserved over 250 million years of cumulative evolution within the eutherian mammals. A Nanog proximal promoter-EGFP (enhanced green fluorescent protein) reporter transgene recapitulates endogenous Nanog mRNA expression in embryonic stem cells and their differentiated derivatives. Sox2 and Oct4 interaction with the Nanog promoter was confirmed through mutagenesis and in vitro binding assays. Electrophoretic mobility shift assays indicate that the Sox2-Oct4 heterodimer forms more efficiently on the composite element within Nanog than the similar element within Fgf4. Using chromatin immunoprecipitation, we show that Oct4 and Sox2 bind to the Nanog promoter in living mouse and human embryonic stem cells. Furthermore, by specific knockdown of Oct4 and Sox2 mRNA by RNA interference in embryonic stem cells, we provide genetic evidence for a link between Oct4, Sox2, and the Nanog promoter. These studies extend the understanding of the pluripotent genetic regulatory network within which the Sox2-Oct4 complex are at the top of the regulatory hierarchy.

摘要

Nanog、Sox2和Oct4是维持胚胎干细胞多能性表型所必需的转录因子。通过协同相互作用,Sox2和Oct4此前被描述为驱动许多基因的多能特异性表达。我们现在将Sox2 - Oct4靶基因列表扩展至包括Nanog。在Nanog近端启动子内,我们鉴定出一个对Nanog多能转录至关重要的复合sox - oct顺式调控元件。该元件在真兽亚纲哺乳动物超过2.5亿年的累积进化过程中保守存在。一个Nanog近端启动子 - EGFP(增强型绿色荧光蛋白)报告转基因在胚胎干细胞及其分化衍生物中重现了内源性Nanog mRNA的表达。通过诱变和体外结合试验证实了Sox2和Oct4与Nanog启动子的相互作用。电泳迁移率变动分析表明,Sox2 - Oct4异二聚体在Nanog内的复合元件上比在Fgf4内的类似元件上更有效地形成。使用染色质免疫沉淀技术,我们表明Oct4和Sox2在活的小鼠和人类胚胎干细胞中与Nanog启动子结合。此外,通过在胚胎干细胞中利用RNA干扰特异性敲低Oct4和Sox2 mRNA,我们为Oct4、Sox2与Nanog启动子之间的联系提供了遗传学证据。这些研究扩展了对多能遗传调控网络的理解,其中Sox2 - Oct4复合物处于调控层级的顶端。

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