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首页> 外文期刊>Current Genetics >Establishment of mRFP1 as a fluorescent marker in Aspergillus nidulans and construction of expression vectors for high-throughput protein tagging using recombination in vitro (GATEWAY)
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Establishment of mRFP1 as a fluorescent marker in Aspergillus nidulans and construction of expression vectors for high-throughput protein tagging using recombination in vitro (GATEWAY)

机译:在构巢曲霉中作为荧光标记的mRFP1的建立和体外重组高通量蛋白质标签的表达载体的构建(GATEWAY)

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摘要

The advent of fluorescent proteins as vital dyes had a major impact in many research fields. Different green fluorescent protein (GFP) variants were established in prokaryotic and eukaryotic organisms within the past 10 years, and other fluorescent proteins were discovered and applied. We expressed the Discosoma red fluorescent protein, DsRed (T4), the improved monomeric red fluorescent protein (mRFP1) and the blue fluorescent protein (BFP) in the filamentous fungus Aspergillus nidulans. Whereas DsRed requires tetramer formation for fluorescence, mRFP1 functions as monomer. We used sGFP, DsRed (T4), mRFP1 and BFP for nuclear and/or mitochondrial labelling. To facilitate gene tagging, we established a number of cloning vectors for the efficient, simultaneous fusion of any protein with mRFP1, BFP and sGFP or the haemagglutinin epitope, 3×HA. A PCR-amplified gene of interest can be inserted into the expression vectors without cloning but using homologous recombination in vitro (GATEWAY). The vectors contain the argB gene as a selection marker for A. nidulans and the inducible alcA promoter for control of expression. The system allows labelling of a protein with several tags in one recombination reaction. Both the nutritional marker gene and the promoter are frequently used in other fungi, suggesting that this set of expression vectors will be very useful tools for gene analysis on a genome-wide scale.
机译:荧光蛋白作为重要染料的出现在许多研究领域都产生了重大影响。在过去的10年中,在原核和真核生物中建立了不同的绿色荧光蛋白(GFP)变体,并发现并应用了其他荧光蛋白。我们在丝状真菌构巢曲霉中表达了Discosoma红色荧光蛋白DsRed(T4),改良的单体红色荧光蛋白(mRFP1)和蓝色荧光蛋白(BFP)。 DsRed需要四聚体形成才能形成荧光,而mRFP1则充当单体。我们使用sGFP,DsRed(T4),mRFP1和BFP进行核和/或线粒体标记。为了促进基因标记,我们建立了许多克隆载体,用于将任何蛋白质与mRFP1,BFP和sGFP或血凝素表位3×HA有效,同时融合。可以在不克隆但使用体外同源重组(GATEWAY)的情况下,无需克隆即可将目的PCR扩增的目的基因插入表达载体。载体含有argB基因作为构巢曲霉的选择标记和诱导型alcA启动子以控制表达。该系统允许在一个重组反应中用多个标签标记蛋白质。营养标记基因和启动子都经常在其他真菌中使用,这表明这组表达载体将是在全基因组范围内进行基因分析的非常有用的工具。

著录项

  • 来源
    《Current Genetics》 |2004年第6期|383-389|共7页
  • 作者单位

    Department of Microbiology University of Marburg and Max-Planck-Institute for terrestrial Microbiology;

    Department of Microbiology University of Marburg and Max-Planck-Institute for terrestrial Microbiology;

    Department of Microbiology University of Marburg and Max-Planck-Institute for terrestrial Microbiology;

    Department of Microbiology University of Marburg and Max-Planck-Institute for terrestrial Microbiology;

    Department of Microbiology University of Marburg and Max-Planck-Institute for terrestrial Microbiology;

    Department of Microbiology University of Marburg and Max-Planck-Institute for terrestrial Microbiology;

    Nadicom;

    Department of Molecular Medicine College of Veterinary Medicine Cornell University;

    Department of Microbiology University of Marburg and Max-Planck-Institute for terrestrial Microbiology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    GFP; DsRed; mRFP1; BFP; GATEWAY; Nuclear staining;

    机译:GFP;DsRed;mRFP1;BFP;GATEWAY;核染色;

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