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RED-SHIFTED EXCITATION MUTANTS OF THE GREEN FLUORESCENT PROTEIN

机译:绿色荧光蛋白的红色兴奋剂

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Using optimized combinatorial mutagenesis techniques and Digital Imaging Spectroscopy (DIS), we have isolated mutants of the cloned Aequorea victoria green fluorescent protein (GFP) that show red-shifted excitation spectra similar to that of Renilla reniformis GFP. Selective excitation of wild-type versus Red-Shifted GFP (RSGFP) enables spectral separation of these proteins. Six contiguous codons spanning the tyrosine chromophore region were randomized and sequence analysis of the mutants revealed a tyrosine-glycine consensus. These mutants will enable the simultaneous analysis of two promoters or proteins per cell or organism. In consideration of the multitude of applications which are developing for GFP alone, we envisage that spectrally shifted fluorescent proteins will be of value to a diversity of research programs, including developmental and cell biology, drug-screening, and diagnostic assays.
机译:使用优化的组合诱变技术和数字成像光谱法(DIS),我们已分离出克隆的维多利亚水母绿色荧光蛋白(GFP)的突变体,该突变体显示出红移的激发光谱,类似于肾形肾病GFP。野生型与红移GFP(RSGFP)的选择性激发能实现这些蛋白质的光谱分离。跨越酪氨酸生色团区域的六个连续密码子被随机化,突变体的序列分析揭示了酪氨酸-甘氨酸共有序列。这些突变体将使每个细胞或生物体同时分析两个启动子或蛋白质。考虑到仅针对GFP的众多应用,我们设想光谱移动的荧光蛋白将对多种研究计划有价值,包括发育和细胞生物学,药物筛选和诊断分析。

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