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首页> 外文期刊>Protein engineering design & selection: PEDS >Red fluorescent protein variants with incorporated non-natural amino acid analogues.
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Red fluorescent protein variants with incorporated non-natural amino acid analogues.

机译:带有非天然氨基酸类似物的红色荧光蛋白变体。

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摘要

Fluorescent proteins are important tools in biotechnology applications and biosensing. DsRed, a red fluorescent protein, has expanded the colors of fluorescent proteins beyond the more commonly used green fluorescent protein. Many genetic modifications have been performed on DsRed to overcome some of its drawbacks. These primarily focused on overcoming the oligomerization detrimental to DsRed activity, and the parasitic green fluorescence caused by the immature chromophore. One such variant, DsRed-monomer, has minimal green fluorescence and no oligomerization. A few traditional mutagenesis studies have been done with DsRed and its mutants to shift the fluorescence wavelengths creating additions to the pallet of fluorescent protein colors. We have explored incorporation of non-natural amino acid analogues into DsRed-Monomer, obtaining variants with differing emission properties. In this work, two such analogues of tyrosine have been incorporated into DsRed-Monomer: 3-amino-l-tyrosine and 3-fluoro-l-tyrosine. Tyrosine analogues were chosen due to the role of tyrosine in the formation and structure of the protein's chromophore. The variants obtained in our study showed altered emission wavelengths and spectral characteristics. Our study demonstrates that incorporation of non-natural analogues into DsRed-Monomer is a viable approach to alter the spectral characteristics of the protein. We envision that this study will open up the door to non-natural mutagenesis studies with red fluorescent proteins and its mutants.
机译:荧光蛋白是生物技术应用和生物传感中的重要工具。红色荧光蛋白DsRed扩展了荧光蛋白的颜色,使其超出了更常用的绿色荧光蛋白的范围。为了克服DsRed的某些缺点,已经对其进行了许多遗传修饰。这些主要集中在克服有害于DsRed活性的低聚反应以及未成熟发色团引起的寄生绿色荧光。一种这样的变体,DsRed-单体,具有最小的绿色荧光并且没有低聚。已经对DsRed及其突变体进行了一些传统的诱变研究,以改变荧光波长,从而为荧光蛋白颜色的添加物添加附加成分。我们已经探索了将非天然氨基酸类似物掺入DsRed-Monomer中,获得具有不同发射特性的变体。在这项工作中,酪氨酸的两个类似物已被掺入DsRed-单体中:3-氨基-1-酪氨酸和3-氟-1-酪氨酸。选择酪氨酸类似物是由于酪氨酸在蛋白质发色团的形成和结构中的作用。在我们的研究中获得的变体显示出改变的发射波长和光谱特性。我们的研究表明,将非天然类似物掺入DsRed-Monomer是改变蛋白质光谱特征的可行方法。我们预想,这项研究将为红色荧光蛋白及其突变体的非自然诱变研究打开大门。

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