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首页> 外文期刊>The Biochemical Journal >Directed evolution of a monomeric, bright and photostable version of Clavularia cyan fluorescent protein: structural characterization and applications in fluorescence imaging
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Directed evolution of a monomeric, bright and photostable version of Clavularia cyan fluorescent protein: structural characterization and applications in fluorescence imaging

机译:单体,明亮和光稳定版本的克拉维青色荧光蛋白的定向进化:结构表征及其在荧光成像中的应用

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The arsenal of engineered variants of the GFP [green FP (fluorescent protein)] from Aequorea jellyfish provides researchers with a powerful set of tools for use in biochemical and cell biology research. The recent discovery of diverse FPs in Anthozoa coral species has provided protein engineers with an abundance of alternative progenitor Fps from which improved variants that complement or supersede existing Aequorea GFP variants could be derived. Here, we report the engineering of the first monomeric version of the tetrameric CFP (cyan FP) cFP484 from Clavularia coral. Starting from a designed synthetic gene library with mammalian codon preferences, we identified dimeric eFP484 variants with fluorescent brightness significantly greater than the wild-type protein. Following incorporation of dimer-breaking mutations and extensive directed evolution with selection for blue-shifted emission, high fluorescent brightness and photostability, we arrived at an optimized variant that we have named mTFP1 [monomeric TFP 1 (teal FP1)]. The new mTFP1 is one of the brightest and most photostable FPs reported to date. In addition, the fluorescence is insensitive to physiologically relevant pH changes and the fluorescence lifetime decay is best fitted as a single exponential. The 1.19 angstrom crystal structure (1 angstrom = 0.1 nm) of mTFP1 confirms the monomeric structure and reveals an unusually distorted chromophore conformation. As we experimentally demonstrate, the high quantum yield of mTFP1 (0.85) makes it particularly suitable as a replacement for ECFP (enhanced CFP) or Cerulean as a FRET (fluorescence resonance energy transfer) donor to either a yellow or orange FP acceptor.
机译:来自水母水母的GFP [绿色FP(荧光蛋白)]的工程变体库为研究人员提供了一套强大的工具,可用于生化和细胞生物学研究。最近在珊瑚属珊瑚物种中发现多种FP,为蛋白质工程师提供了丰富的替代祖先Fps,可以从中衍生出可以补充或取代现有Aequorea GFP变异的改良变异。在这里,我们报道了来自克拉维珊瑚的四聚体CFP(蓝绿色FP)cFP484的第一个单体版本的工程设计。从具有哺乳动物密码子偏好的设计合成基因库开始,我们鉴定出荧光亮度明显大于野生型蛋白的二聚eFP484变异体。在结合了破坏二聚体的突变和广泛的定向进化并选择了蓝移发射,高荧光亮度和光稳定性之后,我们得到了一个优化的变异体,我们将其命名为mTFP1 [单体TFP 1(teal FP1)]。新型mTFP1是迄今为止报道的最亮,最光稳定的FP之一。此外,荧光对生理学相关的pH变化不敏感,并且荧光寿命衰减最适合作为单指数。 mTFP1的1.19埃晶体结构(1埃= 0.1 nm)证实了单体结构,并揭示了异常扭曲的生色团构象。正如我们通过实验证明的那样,mTFP1的高量子产率(0.85)使其特别适合作为ECFP(增强型CFP)或Cerulean的替代品,作为黄色或橙色FP受体的FRET(荧光共振能量转移)供体。

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