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首页> 外文期刊>ACS Chemical Biology >Engineering Orthogonal, Plasma Membrane-Specific SLIPT Systems for Multiplexed Chemical Control of Signaling Pathways in Living Single Cells
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Engineering Orthogonal, Plasma Membrane-Specific SLIPT Systems for Multiplexed Chemical Control of Signaling Pathways in Living Single Cells

机译:工程正交,质膜特异性SLIPT系统,用于生活单细胞中信号通路的多路复用化学控制

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摘要

Most cell behaviors are the outcome of processing information from multiple signals generated upon cell stimulation. Thus, a systematic understanding of cellular systems requires methods that allow the activation of more than one specific signaling molecule or pathway within a cell. However, the construction of tools suitable for such multiplexed signal control remains challenging. In this work, we aimed to develop a platform for chemically manipulating multiple signaling molecules/pathways in living mammalian cells based on self-localizing ligand-induced protein translocation (SLIPT). SLIPT is an emerging chemogenetic tool that controls protein localization and cell signaling using synthetic self-localizing ligands (SLs). Focusing on the inner leaflet of the plasma membrane (PM), where there is a hub of intracellular signaling networks, here we present the design and engineering of two new PM-specific SLIPT systems based on an orthogonal eDHFR and SNAP-tag pair. These systems rapidly induce translocation of eDHFR- and SNAP-tag-fusion proteins from the cytoplasm to the PM specifically in a time scale of minutes upon addition of the corresponding SL. We then show that the combined use of the two systems enables chemically inducible, individual translocation of two distinct proteins in the same cell. Finally, by integrating the orthogonal SLIPT systems with fluorescent reporters, we demonstrate simultaneous multiplexed activation and fluorescence imaging of endogenous ERK and Akt activities in a single cell. Collectively, orthogonal PM-specific SLIPT systems provide a powerful new platform for multiplexed chemical signal control in living single cells, offering new opportunities for dissecting cell signaling networks and synthetic cell manipulation.
机译:大多数小区行为是从细胞刺激产生的多个信号处理信息的结果。因此,对细胞系统的系统理解需要允许在细胞内激活多于一种特异的信号分子或途径的方法。然而,适用于这种多路复用信号控制的工具的构造仍然具有挑战性。在这项工作中,我们旨在基于自定位配体诱导的蛋白易位(Slipt),开发一种用于在生物哺乳动物细胞中进行化学操纵多个信号分子/途径的平台。 Slipt是一种新兴的化学工具,可使用合成自定位配体(SLS)控制蛋白质定位和细胞信号。聚焦在等离子体膜(PM)的内部瓣叶上,其中有一个细胞内信令网络的集线器,这里我们介绍了基于正交EDHFR和SNAP标签对的两个新的PM特定SLIPT系统的设计和工程。这些系统在加入相应的SL时特别地将来自细胞质与细胞质的eDHFr-和捕获标签融合蛋白的易位归入到PM中。然后,我们表明,两个系统的结合使用使得化学诱导,在同一细胞中的两个不同蛋白质的单独易位。最后,通过将正交的Slipt系统与荧光报道器集成,我们在单个细胞中展示了内源ERK和AKT活性的同时复用激活和荧光成像。集体,正交的PM特定的SLIPT系统为生活单细胞中的多路复用化学信号控制提供了强大的新平台,为解剖细胞信号网络和合成细胞操纵提供了新的机会。

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  • 来源
    《ACS Chemical Biology 》 |2020年第4期| 共12页
  • 作者单位

    Nagoya Inst Technol Dept Life Sci &

    Appl Chem Nagoya Aichi 4668555 Japan;

    Nagoya Inst Technol Dept Nanopharmaceut Sci Nagoya Aichi 4668555 Japan;

    Nagoya Inst Technol Dept Life Sci &

    Appl Chem Nagoya Aichi 4668555 Japan;

    Nagaoka Univ Technol Dept Bioengn Nagaoka Niigata 9402188 Japan;

    Kyoto Univ Grad Sch Biostudies Lab Bioimaging &

    Cell Signaling Kyoto 6068501 Japan;

    Nagoya Univ Inst Transformat Biomol ITbM Nagoya Aichi 4648602 Japan;

    Nagoya Inst Technol Dept Life Sci &

    Appl Chem Nagoya Aichi 4668555 Japan;

    Kyoto Univ Grad Sch Biostudies Lab Bioimaging &

    Cell Signaling Kyoto 6068501 Japan;

    Natl Inst Nat Sci Natl Inst Basic Biol Okazaki Aichi 4448787 Japan;

    Nagoya Inst Technol Dept Nanopharmaceut Sci Dept Life Sci &

    Appl Chem Nagoya Aichi 4668555 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学 ;
  • 关键词

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