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具有发色团高化学稳定性的增强型单体蓝色荧光蛋白。

An enhanced monomeric blue fluorescent protein with the high chemical stability of the chromophore.

机构信息

Department of Anatomy and Structural Biology, and Gruss-Lipper Biophotonics Center, Albert Einstein College of Medicine, New York, New York, United States of America.

出版信息

PLoS One. 2011;6(12):e28674. doi: 10.1371/journal.pone.0028674. Epub 2011 Dec 8.

Abstract

Commonly used monomeric blue fluorescent proteins suffer from moderate brightness. The brightest of them, mTagBFP, has a notably low chemical stability over time. Prolonged incubation of mTagBFP leads to its transition from a blue fluorescent state with absorbance at 401 nm to a non-fluorescent state with absorbance at 330 nm. Here, we have determined the chemical structure of the degraded product of the blue mTagBFP-like chromophore. On the basis of mTagBFP we have developed an improved variant, named mTagBFP2. mTagBFP2 exhibits 2-fold greater chemical stability and substantially higher brightness in live cells than mTagBFP. mTagBFP2 is also 1.2-fold and 1.7-fold more photostable than mTagBFP in widefield and confocal microscopy setups, respectively. mTagBFP2 maintains all other beneficial properties of the parental mTagBFP including the high pH stability and fast chromophore formation. The enhanced photostability and chromophore chemical stability of mTagBFP2 make it a superior protein tag. mTagBFP2 performs well in the numerous protein fusions and surpasses mTagBFP as a donor in Förster resonance energy transfer with several green fluorescent protein acceptors.

摘要

常用的单体蓝色荧光蛋白的亮度适中。其中最亮的 mTagBFP 随着时间的推移化学稳定性明显降低。长时间孵育 mTagBFP 会导致其从具有 401nm 吸收峰的蓝色荧光状态转变为具有 330nm 吸收峰的非荧光状态。在这里,我们确定了蓝色 mTagBFP 样生色团降解产物的化学结构。在此基础上,我们开发了一种改良变体,命名为 mTagBFP2。与 mTagBFP 相比,mTagBFP2 的化学稳定性提高了 2 倍,在活细胞中的亮度也提高了 2 倍。mTagBFP2 在宽场和共聚焦显微镜设置中的光稳定性分别比 mTagBFP 高 1.2 倍和 1.7 倍。mTagBFP2 保持了亲本 mTagBFP 的所有其他有益特性,包括高 pH 稳定性和快速生色团形成。mTagBFP2 的增强的光稳定性和生色团化学稳定性使其成为一种优越的蛋白质标签。mTagBFP2 在众多蛋白质融合中表现良好,并在与几个绿色荧光蛋白受体的Förster 共振能量转移中超过 mTagBFP 作为供体。

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