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The first mutant of the Aequorea victoria green fluorescent protein that forms a red chromophore

机译:形成红色生色团的维多利亚水母绿色荧光蛋白的第一个突变体

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摘要

Green fluorescent protein (GFP) from a jellyfish, Aequorea victoria, and its mutants are widely used in biomedical studies as fluorescent markers. In spite of the enormous efforts of academia and industry toward generating its red fluorescent mutants, no GFP variants with emission maximum at more than 529 nm have been developed during the 15 years since its cloning. Here, we used a new strategy of molecular evolution aimed at generating a red-emitting mutant of GFP. As a result, we have succeeded in producing the first GFP mutant that substantially matures to the red-emitting state with excitation and emission maxima at 555 and 585 nm, respectively. A novel, nonoxidative mechanism for formation of the red chromophore in this mutant that includes a dehydration of the Ser65 side chain has been proposed. Model experiments showed that the novel dual-color GFP mutant with green and red emission is suitable for multicolor flow cytometry as an additional color since it is clearly separable from both green and red fluorescent tags.
机译:来自水母维多利亚水母及其突变体的绿色荧光蛋白(GFP)作为荧光标记广泛用于生物医学研究。尽管学术界和工业界为产生其红色荧光突变体付出了巨大的努力,但自克隆以来的15年间,尚未开发出最大发射量超过529 nm的GFP突变体。在这里,我们使用了一种新的分子进化策略,旨在产生GFP的红色发光突变体。结果,我们成功地产生了第一个GFP突变体,该突变体在555和585 nm处的激发和发射最大值分别基本成熟为红色发射状态。已经提出了在该突变体中形成红色发色团的新的非氧化机制,该机制包括Ser65侧链的脱水。模型实验表明,具有绿色和红色发射的新型双色GFP突变体适合作为多色流式细胞术的一种附加颜色,因为它显然可与绿色和红色荧光标签分开。

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