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上下文相关的合成哺乳动物启动子的发现与验证

Discovery and Validation of Context-Dependent Synthetic Mammalian Promoters.

作者信息

Zahm Adam M, Owens William S, Himes Samuel R, Rondem Kathleen E, Fallon Braden S, Gormick Alexa N, Bloom Joshua S, Kosuri Sriram, Chan Henry, English Justin G

机构信息

Department of Biochemistry, University of Utah School of Medicine, Salt Lake City, UT, USA.

Octant Inc., Emeryville, CA, USA.

出版信息

bioRxiv. 2023 May 11:2023.05.11.539703. doi: 10.1101/2023.05.11.539703.

Abstract

Cellular transcription enables cells to adapt to various stimuli and maintain homeostasis. Transcription factors bind to transcription response elements (TREs) in gene promoters, initiating transcription. Synthetic promoters, derived from natural TREs, can be engineered to control exogenous gene expression using endogenous transcription machinery. This technology has found extensive use in biological research for applications including reporter gene assays, biomarker development, and programming synthetic circuits in living cells. However, a reliable and precise method for selecting minimally-sized synthetic promoters with desired background, amplitude, and stimulation response profiles has been elusive. In this study, we introduce a massively parallel reporter assay library containing 6184 synthetic promoters, each less than 250 bp in length. This comprehensive library allows for rapid identification of promoters with optimal transcriptional output parameters across multiple cell lines and stimuli. We showcase this library's utility to identify promoters activated in unique cell types, and in response to metabolites, mitogens, cellular toxins, and agonism of both aminergic and non-aminergic GPCRs. We further show these promoters can be used in luciferase reporter assays, eliciting 50-100 fold dynamic ranges in response to stimuli. Our platform is effective, easily implemented, and provides a solution for selecting short-length promoters with precise performance for a multitude of applications.

摘要

细胞转录使细胞能够适应各种刺激并维持体内平衡。转录因子与基因启动子中的转录反应元件(TRE)结合,启动转录。源自天然TRE的合成启动子可经改造,利用内源性转录机制来控制外源基因表达。这项技术在生物学研究中已得到广泛应用,包括报告基因检测、生物标志物开发以及对活细胞中的合成电路进行编程。然而,一种可靠且精确的方法来选择具有所需背景、幅度和刺激反应谱的最小尺寸合成启动子一直难以实现。在本研究中,我们引入了一个包含6184个合成启动子的大规模平行报告基因检测文库,每个启动子长度小于250 bp。这个综合文库能够快速鉴定出在多种细胞系和刺激条件下具有最佳转录输出参数的启动子。我们展示了这个文库在鉴定在独特细胞类型中被激活的启动子以及对代谢物、有丝分裂原、细胞毒素以及胺能和非胺能GPCR激动剂作出反应的启动子方面的效用。我们进一步表明,这些启动子可用于荧光素酶报告基因检测,在受到刺激时引发50至100倍的动态范围。我们的平台有效且易于实施,为众多应用选择具有精确性能的短长度启动子提供了解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75c9/10197685/0e1e68c26975/nihpp-2023.05.11.539703v1-f0001.jpg

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