在培养细胞和黑腹果蝇中使用短肽标签单拷贝的蛋白质操作

M. Vigano, Clara-Maria Ell, Manuela M M Kustermann, Gustavo Aguilar, S. Matsuda, Ning Zhao, T. Stasevich, George Pyrowolakis, M. Affolter
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引用次数: 13

摘要

细胞的发育和功能依赖于分布在所有细胞区室的蛋白质之间的高度动态的分子相互作用。对这些相互作用的分析一直是细胞和发育研究的主要课题之一,并且主要是通过在遗传水平上操纵感兴趣蛋白(POIs)来实现的。尽管遗传策略对我们目前的理解做出了重大贡献,但以时间和空间控制的方式靶向poi的特定相互作用或分析poi在动态细胞过程(如细胞迁移或细胞分裂)中的作用将受益于更直接的方法。近年来,随着合成生物学的进步,可以在细胞内表达和发挥作用的特异性蛋白质结合物的发展,为直接操纵蛋白质创造了一个新的工具箱。在这里,我们选择了一些短标签表位,这些表位已经从不同的支架中生成了蛋白质结合物,并表明这些标签的单拷贝允许在活细胞中有效地结合和操作POI。在果蝇中,我们也发现单个短标签可以用于体内POI操作。摘要:将短表位标签的单拷贝插入感兴趣的蛋白质中,允许通过遗传编码的表位结合物在体内结合和操作产生的嵌合蛋白。
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Protein manipulation using single copies of short peptide tags in cultured cells and in Drosophila melanogaster
ABSTRACT Cellular development and function rely on highly dynamic molecular interactions among proteins distributed in all cell compartments. Analysis of these interactions has been one of the main topics in cellular and developmental research, and has been mostly achieved by the manipulation of proteins of interest (POIs) at the genetic level. Although genetic strategies have significantly contributed to our current understanding, targeting specific interactions of POIs in a time- and space-controlled manner or analysing the role of POIs in dynamic cellular processes, such as cell migration or cell division, would benefit from more-direct approaches. The recent development of specific protein binders, which can be expressed and function intracellularly, along with advancement in synthetic biology, have contributed to the creation of a new toolbox for direct protein manipulations. Here, we have selected a number of short-tag epitopes for which protein binders from different scaffolds have been generated and showed that single copies of these tags allowed efficient POI binding and manipulation in living cells. Using Drosophila, we also find that single short tags can be used for POI manipulation in vivo. Summary: Single copies of short epitope tags were inserted into proteins of interest, allowing for in vivo binding and manipulation of the resulting chimeric proteins by genetically encoded epitope binders.
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