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A novel strategy to dissect endogenous gene transcriptional regulation in live cells

机译:一种探讨活细胞内源基因转录调控的新策略

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Gene transcription is a central tenet of biology, traditionally measured by RT-PCR, microarray, or more recently, RNA sequencing. However, these measurements only provide a snapshot of the state of gene transcription and only represent an overall readout of complex transcriptional networks that regulate gene expression. In this report, we describe a novel strategy to dissect endogenous gene transcription regulation in live cells by knocking in a reporter gene, EGFP, under the control of the endogenous gene promoter, using the ARID1A gene as an example. The ARID1A gene, encoding a subunit of the ATP dependent chromatin remodeling complex SNF/SWI, has recently been identified as a tumor suppressor in multiple cancers. Despite studies that elucidate the mechanism of ARID1A's tumor suppressor function, little is known of the genes/events that regulate ARIDIA expression. Using the HEK293 cells as a model, we discovered novel aspects of ARIDIA transcription regulation in response to cell cycle progression, DNA damage, and microRNAs, exemplifying the potential of our strategy in providing new insight to the mechanism of gene transcription regulation. This strategy can be generalized to essentially any gene of interest, making it a powerful tool for the study of gene expression heterogeneity, especially in cancer cells, and a robust readout for high-throughput screening of agents that modulate gene transcription. (C) 2017 Elsevier Inc. All rights reserved.
机译:基因转录是一种生物学的中央宗旨,传统上通过RT-PCR,微阵列或最近,RNA测序测量。然而,这些测量仅提供基因转录状态的快照,并且仅代表调节基因表达的复杂转录网络的整体读数。在本报告中,我们使用ARID1A基因在内源基因启动子的控制下,通过ARID1A基因作为一个实例,描述一种新的策略,以通过敲入内源基因启动子的控制下敲击报告基因,EGFP。最近在多种癌症中鉴定为依赖ATP依赖性染色质重塑复合SNF / SWI的ATP依赖性染色质谱的亚基的ARID1A基因。尽管研究阐明了ARID1A的肿瘤抑制功能的机制,但迄今已知对aridia表达的基因/事件少。使用HEK293细胞作为模型,我们发现了响应细胞周期进展,DNA损伤和MicroRNA的aridia转录调控的新颖方面,示出了我们对基因转录调控机制提供了新的洞察力的潜力。该策略可以推广到基本上是任何感兴趣的基因,使其成为研究基因表达异质性,特别是在癌细胞中的强大工具,以及调节基因转录的药剂的高通量筛选的鲁棒读出。 (c)2017年Elsevier Inc.保留所有权利。

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