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青色荧光蛋白的复杂荧光:与H148D变体的比较及对细胞定量成像的影响

Complex fluorescence of the cyan fluorescent protein: comparisons with the H148D variant and consequences for quantitative cell imaging.

作者信息

Villoing Aude, Ridhoir Myriam, Cinquin Bertrand, Erard Marie, Alvarez Luis, Vallverdu Germain, Pernot Pascal, Grailhe Régis, Mérola Fabienne, Pasquier Hélène

机构信息

Laboratoire de Chimie Physique, UMR 8000, Université Paris-Sud 11 and CNRS, Orsay 91405, France.

出版信息

Biochemistry. 2008 Nov 25;47(47):12483-92. doi: 10.1021/bi801400d.

Abstract

We have studied the fluorescence decays of the purified enhanced cyan fluorescent protein (ECFP, with chromophore sequence Thr-Trp-Gly) and of its variant carrying the single H148D mutation characteristic of the brighter form Cerulean. Both proteins exhibit highly complex fluorescence decays showing strong temperature and pH dependences. At neutral pH, the H148D mutation leads (i) to a general increase in all fluorescence lifetimes and (ii) to the disappearance of a subpopulation, estimated to be more than 25% of the total ECFP molecules, characterized by a quenched and red-shifted fluorescence. The fluorescence lifetime distributions of ECFP and its H148D mutant remain otherwise very similar, indicating a high degree of structural and dynamic similarity of the two proteins in their major form. From thermodynamic analysis, we conclude that the multiexponential decay of ECFP cannot be simply ascribed, as is generally admitted, to the slow conformational exchange characterized by NMR and X-ray crystallographic studies [Seifert, M. H., et al. (2002) J. Am. Chem. Soc. 124, 7932-7942; Bae, J. H., et al. (2003) J. Mol. Biol. 328, 1071-1081]. Parallel measurements in living cells show that these fluorescence properties in neutral solution are very similar to those of cytosolic ECFP.

摘要

我们研究了纯化的增强型青色荧光蛋白(ECFP,发色团序列为Thr-Trp-Gly)及其携带更亮形式的天蓝色荧光蛋白特有的单一H148D突变的变体的荧光衰减。这两种蛋白质都表现出高度复杂的荧光衰减,显示出强烈的温度和pH依赖性。在中性pH值下,H148D突变导致:(i)所有荧光寿命普遍增加;(ii)一个亚群消失,估计该亚群占ECFP分子总数的25%以上,其特征是荧光猝灭且红移。ECFP及其H148D突变体的荧光寿命分布在其他方面仍然非常相似,表明这两种蛋白质的主要形式在结构和动力学上具有高度相似性。通过热力学分析,我们得出结论,ECFP的多指数衰减不能像通常所认为的那样简单地归因于核磁共振(NMR)和X射线晶体学研究[Seifert, M. H.,等人(2002年)《美国化学会志》124, 7932 - 7942;Bae, J. H.,等人(2003年)《分子生物学杂志》328, 1071 - 1081]所表征的缓慢构象交换。在活细胞中的平行测量表明,中性溶液中的这些荧光特性与胞质ECFP的荧光特性非常相似。

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