Grinvald A, Schlessinger J, Pecht I, Steinberg I Z
Biochemistry. 1975 May 6;14(9):1921-29. doi: 10.1021/bi00680a018.
The fluorescence decay of apoazurin derived from Pseudomonas aeruginosa is monoexponential. By this criterion the population of molecules of apoazurin is homogeneous. The emission anisotropy factor and the absorption anisotropy factor at the red edge of the absorption band assume similar values, showing that the tryptophan residue in apoazurin has the same asymmetric environment both in the ground and excited states. This finding suggests tight packing of the protein at the tryptophan environment. Native azurin does not decay monoexponentially. Moreover, comparison between the quantum yield calculated from the decay kinetics and the one measured directly shows that the majority of the azurin molecules are not fluorescent. There is thus variability in the structure of azurin molecules with an equilibration time that is longer than the fluorescence lifetime. Different asymmetric environment was found for the tryptophan residue in oxidized and reduced holoprotein and in apoazurin, as studied by the circular polarization of the fluorescence. D(2)O increases the fluorescence lifetime of apoazurin by 6 percent, compared to the lifetime in H(2)O solution; therefore water molecules may have access to the tryptophan residue, though the latter is situated in a hydrophobic environment.
源自铜绿假单胞菌的脱辅基天青蛋白的荧光衰减是单指数的。据此标准,脱辅基天青蛋白分子群体是均匀的。发射各向异性因子和吸收带红边处的吸收各向异性因子具有相似的值,表明脱辅基天青蛋白中的色氨酸残基在基态和激发态都具有相同的不对称环境。这一发现表明蛋白质在色氨酸环境处紧密堆积。天然天青蛋白并非单指数衰减。此外,由衰减动力学计算出的量子产率与直接测量的量子产率之间的比较表明,大多数天青蛋白分子不发荧光。因此,天青蛋白分子结构存在变异性,其平衡时间长于荧光寿命。通过荧光圆偏振研究发现,氧化型和还原型全蛋白以及脱辅基天青蛋白中的色氨酸残基具有不同的不对称环境。与在H₂O溶液中的寿命相比,D₂O使脱辅基天青蛋白的荧光寿命增加了6%;因此,水分子可能能够接近色氨酸残基,尽管后者位于疏水环境中。