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Novel flavin-based fluorescent proteins with red-shifted emission bands: a computational study

机译:新型黄素基荧光蛋白,红移发射带:计算研究

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摘要

The iLOV protein is a promising member of the class of flavin mononucleotide (FMN) based fluorescent proteins (FbFPs). It is becoming a popular tool for bioanalytical applications and bioimaging as a competitor of the well-known green fluorescent protein and its analogues. The main limitation of FbFPs is that all the members have close values of their absorption and emission band maxima. Therefore the upcoming challenge is to introduce novel variants of FbFPs to extend their color palette. We report the results of computational studies of iLOV variants, introducing point mutations and chromophore analogues. We found that point mutations of the apoprotein and substitution of FMN with either 8-amino-FMN or 8-methylamino-FMN lead to the red shift of emission bands up to 100 nm. Substitution with 1-deaza-FMN and the point mutations of the apoprotein result in a set of novel fluorescent proteins with emission bands in the "transparent" window where light readily penetrates through mammalian tissues. Newly suggested FbFPs can be used for multicolor imaging and also as components of FRET pairs.
机译:ILOV蛋白是基于Flavin单核苷酸(FMN)的荧光蛋白(FBFPS)类的有希望的成员。它正在成为生物分析应用和生物分析作为众所周知的绿色荧光蛋白及其类似物的竞争者的流行工具。 FBFP的主要限制是所有成员都有近距离其吸收和排放带最大值的值。因此,即将到来的挑战是引入FBFP的新型变体来延长其调色板。我们报告了ILOV变体的计算研究结果,引入点突变和发色团类似物。我们发现,具有8-氨基-FMN或8-甲基氨基-FMN的食用素和FMN取代的点突变导致发射带的红色移位高达100nm。用1-deaza-fmn的取代和凋亡的点突变导致一组新的荧光蛋白,在“透明”窗口中具有发射带的发射带,其中光易于通过哺乳动物组织渗透。新建议的FBFPS可用于多色成像,也可用作FRET对的组件。

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