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基因组编辑表明,-5 kb Nanog 增强子通过调节 RNAPII 起始和/或募集来调节 Nanog 表达。

Genome editing demonstrates that the -5 kb Nanog enhancer regulates Nanog expression by modulating RNAPII initiation and/or recruitment.

机构信息

Department of Cell Biology, Neurobiology, and Anatomy, Medical College of Wisconsin, Milwaukee, Wisconsin, USA; Blood Research Institute, Versiti, Milwaukee, Wisconsin, USA.

Blood Research Institute, Versiti, Milwaukee, Wisconsin, USA.

出版信息

J Biol Chem. 2021 Jan-Jun;296:100189. doi: 10.1074/jbc.RA120.015152. Epub 2020 Dec 20.

Abstract

Transcriptional enhancers have been defined by their ability to operate independent of distance and orientation in plasmid-based reporter assays of gene expression. At present, histone marks are used to identify and define enhancers but do not consider the endogenous role of an enhancer in the context of native chromatin. We employed a combination of genomic editing, single cell analyses, and sequencing approaches to investigate a Nanog-associated cis-regulatory element, which has been reported by others to be either an alternative promoter or a super-enhancer. We first demonstrate both distance and orientation independence in native chromatin, eliminating the issues raised with plasmid-based approaches. We next demonstrate that the dominant super-enhancer modulates Nanog globally and operates by recruiting and/or initiating RNA Polymerase II. Our studies have important implications to how transcriptional enhancers are defined and how they regulate gene expression.

摘要

转录增强子的定义是它们能够在基于质粒的基因表达报告实验中独立于距离和方向发挥作用。目前,组蛋白标记被用于识别和定义增强子,但它们没有考虑增强子在天然染色质中的内源性作用。我们采用基因组编辑、单细胞分析和测序方法相结合,研究了一个 Nanog 相关的顺式调控元件,该元件已被报道为替代启动子或超级增强子。我们首先在天然染色质中证明了距离和方向的独立性,消除了基于质粒方法提出的问题。接下来,我们证明了显性超级增强子对 Nanog 进行全局调控,并通过招募和/或启动 RNA 聚合酶 II 来发挥作用。我们的研究对如何定义转录增强子以及它们如何调节基因表达具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4708/7948488/c4585e173ea1/gr1.jpg

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