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多能性调节因子 Zic3 是胚胎干细胞中 Nanog 启动子的直接激活剂。

The pluripotency regulator Zic3 is a direct activator of the Nanog promoter in ESCs.

机构信息

Stem Cell and Developmental Biology Group, Genome Institute of Singapore, Singapore.

出版信息

Stem Cells. 2010 Nov;28(11):1961-9. doi: 10.1002/stem.527.

Abstract

The transcription factor Zic3 is required for maintenance of ESC pluripotency. By genome-wide chromatin immunoprecipitation (ChIP-chip) in ESCs, we have identified 379 direct Zic3 targets, many of which are functionally associated with pluripotency, cell cycle, proliferation, oncogenesis, and early embryogenesis. Through a computational analysis of Zic3 target sequences, we have identified a novel Zic3 consensus binding motif (5'-CC(C)/(T) GCTGGG-3'). ChIP results and in vitro DNA binding assays revealed that Zic3 binds with high affinity and specificity on the Nanog promoter. Here, we demonstrate that Zic3 functions as a transcriptional activator of the Nanog promoter in three ways: (a) Nanog transcript levels are sustained with Zic3 overexpression in differentiating ESCs, (b) Zic3 depletion in ESCs downregulates Nanog promoter activity, and (c) Zic3 overexpression leads to increased Nanog promoter activity. Furthermore, the activity of a mutant Nanog promoter with ablated Oct4/Sox2 binding is rescued by Zic3 overexpression to nearly wild-type levels. This indicates that Nanog is a positive transcriptional target of Zic3 in a mechanism that is independent of Oct4/Sox2 binding. Hence, we demonstrate an important pathway for regulation of Nanog expression in pluripotent ESCs through direct activation by Zic3.

摘要

转录因子 Zic3 对于维持 ESC 的多能性是必需的。通过在 ESCs 中进行全基因组染色质免疫沉淀 (ChIP-chip),我们已经鉴定出 379 个直接的 Zic3 靶标,其中许多靶标在功能上与多能性、细胞周期、增殖、致癌和早期胚胎发生有关。通过对 Zic3 靶序列的计算分析,我们已经确定了一个新的 Zic3 保守结合基序(5'-CC(C)/(T) GCTGGG-3')。ChIP 结果和体外 DNA 结合实验表明,Zic3 可以在 Nanog 启动子上以高亲和力和特异性结合。在这里,我们证明 Zic3 通过三种方式作为 Nanog 启动子的转录激活剂发挥作用:(a) 在分化的 ESCs 中过表达 Zic3 时,Nanog 转录本水平得以维持,(b) ESCs 中 Zic3 的耗竭下调 Nanog 启动子活性,以及 (c) Zic3 的过表达导致 Nanog 启动子活性增加。此外,具有 Oct4/Sox2 结合缺失的突变 Nanog 启动子的活性通过 Zic3 的过表达恢复到接近野生型水平。这表明 Nanog 是 Zic3 在独立于 Oct4/Sox2 结合的机制中对多能性 ESCs 进行正向转录调控的靶标。因此,我们证明了通过 Zic3 的直接激活来调节多能性 ESCs 中 Nanog 表达的重要途径。

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