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利用转录激活样效应因子(TALE)转录抑制因子构建哺乳动物基因回路的模块化结构

Modular construction of mammalian gene circuits using TALE transcriptional repressors.

作者信息

Li Yinqing, Jiang Yun, Chen He, Liao Weixi, Li Zhihua, Weiss Ron, Xie Zhen

机构信息

Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, 40 Ames St, Cambridge MA 02142, USA.

Bioinformatics Division/Center for Synthetic & Systems Biology, Tsinghua National Laboratory for Information Science and Technology, Tsinghua University, Beijing, 100084, China.

出版信息

Nat Chem Biol. 2015 Mar;11(3):207-213. doi: 10.1038/nchembio.1736. Epub 2015 Feb 2.

Abstract

An important goal of synthetic biology is the rational design and predictable implementation of synthetic gene circuits using standardized and interchangeable parts. However, engineering of complex circuits in mammalian cells is currently limited by the availability of well-characterized and orthogonal transcriptional repressors. Here, we introduce a library of 26 reversible transcription activator-like effector repressors (TALERs) that bind newly designed hybrid promoters and exert transcriptional repression through steric hindrance of key transcriptional initiation elements. We demonstrate that using the input-output transfer curves of our TALERs enables accurate prediction of the behavior of modularly assembled TALER cascade and switch circuits. We also show that TALER switches using feedback regulation exhibit improved accuracy for microRNA-based HeLa cancer cell classification versus HEK293 cells. Our TALER library is a valuable toolkit for modular engineering of synthetic circuits, enabling programmable manipulation of mammalian cells and helping elucidate design principles of coupled transcriptional and microRNA-mediated post-transcriptional regulation.

摘要

合成生物学的一个重要目标是使用标准化且可互换的部件对合成基因电路进行合理设计和可预测的实施。然而,目前哺乳动物细胞中复杂电路的工程设计受到特征明确且正交的转录抑制因子可用性的限制。在此,我们引入了一个包含26种可逆转录激活样效应因子抑制子(TALERs)的文库,这些抑制子与新设计的杂交启动子结合,并通过对关键转录起始元件的空间位阻发挥转录抑制作用。我们证明,利用我们的TALERs的输入-输出转移曲线能够准确预测模块化组装的TALER级联和开关电路的行为。我们还表明,与HEK293细胞相比,使用反馈调节的TALER开关在基于microRNA的HeLa癌细胞分类中表现出更高的准确性。我们的TALER文库是用于合成电路模块化工程的宝贵工具包,能够对哺乳动物细胞进行可编程操作,并有助于阐明转录和microRNA介导的转录后调控耦合的设计原则。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f40/4333066/5e7f3767bc61/nihms-645119-f0001.jpg

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