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用于酿酒酵母基因表达正交控制的合成转录放大系统。

Synthetic Transcription Amplifier System for Orthogonal Control of Gene Expression in Saccharomyces cerevisiae.

作者信息

Rantasalo Anssi, Czeizler Elena, Virtanen Riitta, Rousu Juho, Lähdesmäki Harri, Penttilä Merja, Jäntti Jussi, Mojzita Dominik

机构信息

VTT Technical Research Centre of Finland, P.O. Box 1000, FI-02044 VTT, Espoo, Finland.

Helsinki Institute for Information Technology HIIT, Department of Computer Science, Aalto University, P.O. Box 15400, FI-00076 Aalto, Espoo, Finland.

出版信息

PLoS One. 2016 Feb 22;11(2):e0148320. doi: 10.1371/journal.pone.0148320. eCollection 2016.

Abstract

This work describes the development and characterization of a modular synthetic expression system that provides a broad range of adjustable and predictable expression levels in S. cerevisiae. The system works as a fixed-gain transcription amplifier, where the input signal is transferred via a synthetic transcription factor (sTF) onto a synthetic promoter, containing a defined core promoter, generating a transcription output signal. The system activation is based on the bacterial LexA-DNA-binding domain, a set of modified, modular LexA-binding sites and a selection of transcription activation domains. We show both experimentally and computationally that the tuning of the system is achieved through the selection of three separate modules, each of which enables an adjustable output signal: 1) the transcription-activation domain of the sTF, 2) the binding-site modules in the output promoter, and 3) the core promoter modules which define the transcription initiation site in the output promoter. The system has a novel bidirectional architecture that enables generation of compact, yet versatile expression modules for multiple genes with highly diversified expression levels ranging from negligible to very strong using one synthetic transcription factor. In contrast to most existing modular gene expression regulation systems, the present system is independent from externally added compounds. Furthermore, the established system was minimally affected by the several tested growth conditions. These features suggest that it can be highly useful in large scale biotechnology applications.

摘要

这项工作描述了一种模块化合成表达系统的开发与特性,该系统可在酿酒酵母中提供广泛的可调节且可预测的表达水平。该系统作为一个固定增益转录放大器,输入信号通过合成转录因子(sTF)传递到一个合成启动子上,该合成启动子包含一个确定的核心启动子,从而产生转录输出信号。系统激活基于细菌LexA-DNA结合结构域、一组经过修饰的模块化LexA结合位点以及一系列转录激活结构域。我们通过实验和计算表明,系统的调节是通过选择三个独立的模块实现的,每个模块都能产生一个可调节的输出信号:1)sTF的转录激活结构域,2)输出启动子中的结合位点模块,3)定义输出启动子中转录起始位点的核心启动子模块。该系统具有一种新颖的双向架构,能够使用一个合成转录因子为多个基因生成紧凑但通用的表达模块,这些基因的表达水平高度多样化,从可忽略不计到非常强。与大多数现有的模块化基因表达调控系统不同,本系统不依赖于外部添加的化合物。此外,所建立的系统在几种测试的生长条件下受到的影响最小。这些特性表明它在大规模生物技术应用中可能非常有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bc4/4762949/8e9b4a3932eb/pone.0148320.g001.jpg

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