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化学诱导型人工转录因子实现高效且正交的转录调控

Efficient and Orthogonal Transcription Regulation by Chemically Inducible Artificial Transcription Factors.

作者信息

Nomura Wataru, Matsumoto Daisuke, Sugii Taisuke, Kobayakawa Takuya, Tamamura Hirokazu

机构信息

Institute of Biomaterials and Bioengineering , Tokyo Medical and Dental University , 2-3-10 Kandasurugadai , Chiyoda-ku, Tokyo 101-0062 , Japan.

出版信息

Biochemistry. 2018 Nov 13;57(45):6452-6459. doi: 10.1021/acs.biochem.8b00741. Epub 2018 Nov 2.

Abstract

The DNA-binding specificity of genome editing tools can be applied to gene regulation. Recently, multiple artificial transcription factors (ATFs) were shown to synergistically and efficiently regulate gene expression. Chemically triggered protein associations are useful for functional regulation at specific timings. A combination of several inducible protein association systems could enable the regulation of multiple genes at different loci with independent timing. We applied the FKBP-rapamycin-FRB and GAI-gibberellin-GID systems for gene regulation using multiple TALEs and dCas9. By the combined use of currently available systems, reporter gene assays were performed; the results indicated that gene expression was regulated by rapamycin or gibberellin in the presence of the FRB or GAI effector domains, respectively. Furthermore, the activation of endogenous genes was differentially regulated by the system. This success suggests the usability of the chemically inducible multiple ATFs for the time-dependent regulation of multiple genes, such as the case for cellular phenomena that are dependent on the programmable timing of expression and the differential expression of multiple genes.

摘要

基因组编辑工具的DNA结合特异性可应用于基因调控。最近,多种人工转录因子(ATF)被证明能协同且高效地调控基因表达。化学触发的蛋白质缔合对于特定时间的功能调控很有用。几种诱导型蛋白质缔合系统的组合能够在不同时间独立调控不同位点的多个基因。我们将FKBP-雷帕霉素-FRB和GAI-赤霉素-GID系统应用于使用多个转录激活样效应因子(TALE)和dCas9的基因调控。通过联合使用目前可用的系统,进行了报告基因检测;结果表明,在分别存在FRB或GAI效应结构域的情况下,基因表达分别受雷帕霉素或赤霉素调控。此外,该系统对内源基因的激活进行了差异调控。这一成功表明化学诱导的多种ATF可用于对多个基因进行时间依赖性调控,比如依赖于可编程表达时间和多个基因差异表达的细胞现象。

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