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首页> 外文期刊>ACS Synthetic Biology >A Green-Light-Responsive System for the Control of Transgene Expression in Mammalian and Plant Cells
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A Green-Light-Responsive System for the Control of Transgene Expression in Mammalian and Plant Cells

机译:一种用于控制哺乳动物和植物细胞转基因表达的绿光响应系统

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摘要

The ever-increasing complexity of synthetic gene networks and applications of synthetic biology requires precise and orthogonal gene expression systems. Of particular interest are systems responsive to light as they enable the control of gene expression dynamics with unprecedented resolution in space and time. While broadly used in mammalian backgrounds, however, optogenetic approaches in plant cells are still limited due to interference of the activating light with endogenous photoreceptors. Here, we describe the development of the first synthetic light-responsive system for the targeted control of gene expression in mammalian and plant cells that responds to the green range of the light spectrum in which plant photoreceptors have minimal activity. We first engineered a system based on the light-sensitive bacterial transcription factor CarH and its cognate DNA operator sequence CarO from i>Thermus thermophilus to control gene expression in mammalian cells. The system was functional in various mammalian cell lines, showing high induction (up to 350-fold) along with low leakiness, as well as high reversibility. We quantitatively described the systems characteristics by the development and experimental validation of a mathematical model. Finally, we transferred the system into i>A. thaliana protoplasts and demonstrated gene repression in response to green light. We expect that this system will provide new opportunities in applications based on synthetic gene networks and will open up perspectives for optogenetic studies in mammalian and plant cells.
机译:综合基因网络和合成生物学应用的不断增长的复杂性需要精确和正交的基因表达系统。特别感兴趣的是响应于光的系统,因为它们能够在空间和时间内具有前所未有的分辨率来控制基因表达动态。然而,虽然广泛用于哺乳动物背景,但由于活化光与内源性光感受器的干涉,植物细胞的致光学方法仍然受到限制。在这里,我们描述了第一种合成光响应系统的开发,用于哺乳动物和植物细胞中基因表达的靶向控制的靶向控制,该植物细胞响应植物感光体具有最小活性的光谱的绿色范围。我们首先通过&lt中研制基于光敏细菌转录因子Carh及其同源DNA算子序列Caro的系统。该系统在各种哺乳动物细胞系中具有功能性,显示出高诱导(高达350倍)以及低泄漏,以及高可逆性。我们通过数学模型的开发和实验验证定量地描述了系统特征。最后,我们将系统转化为& i> a。肉质原生质体,并响应绿灯的基因抑制。我们预计该系统将在基于合成基因网络的应用中提供新的机会,并将开辟哺乳动物和植物细胞的致灭绝研究的侧视图。

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  • 来源
    《ACS Synthetic Biology》 |2018年第5期|共10页
  • 作者单位

    Faculty of Biology BIOSS Centre for Biological Signalling Studies SGBM Spemann Graduate School of Biology and Medicine and Institute of Physics University of Freiburg Freiburg 79104 Germany;

    Faculty of Biology BIOSS Centre for Biological Signalling Studies SGBM Spemann Graduate School of Biology and Medicine and Institute of Physics University of Freiburg Freiburg 79104 Germany;

    Faculty of Biology BIOSS Centre for Biological Signalling Studies SGBM Spemann Graduate School of Biology and Medicine and Institute of Physics University of Freiburg Freiburg 79104 Germany;

    Faculty of Biology BIOSS Centre for Biological Signalling Studies SGBM Spemann Graduate School of Biology and Medicine and Institute of Physics University of Freiburg Freiburg 79104 Germany;

    Faculty of Biology BIOSS Centre for Biological Signalling Studies SGBM Spemann Graduate School of Biology and Medicine and Institute of Physics University of Freiburg Freiburg 79104 Germany;

    National Physical Laboratory Teddington Middlesex TW11 0LW U.K.;

    Faculty of Biology BIOSS Centre for Biological Signalling Studies SGBM Spemann Graduate School of Biology and Medicine and Institute of Physics University of Freiburg Freiburg 79104 Germany;

    Institute of Synthetic Biology and iGRAD Plant Graduate School Heinrich Heine University Düsseldorf 40225 Germany;

    Faculty of Biology BIOSS Centre for Biological Signalling Studies SGBM Spemann Graduate School of Biology and Medicine and Institute of Physics University of Freiburg Freiburg 79104 Germany;

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  • 原文格式 PDF
  • 正文语种 other
  • 中图分类 分子生物学;
  • 关键词

    AdoB12; CarH; green light; light-responsive gene expression; optogenetics; plants;

    机译:adob12;carh;绿灯;光响应基因表达;光学学;植物;

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