Turoverov K K, Kuznetsova I M, Zaitsev V N
Biophys Chem. 1985 Nov;23(1-2):79-89. doi: 10.1016/0301-4622(85)80066-1.
Special analysis of the tryptophan residue localization in the structure of the macromolecule of Pseudomonas aeruginosa azurin made it possible to prove many explanations in the existing literature of the extraordinary fluorescence properties of this protein, to choose between various contradictory conclusions and in some cases even to make new interpretations of the known experimental data. It has been revealed that the microenvironment of the tryptophan residue is in principle formed by non-polar hydrocarbon groups. The density of the microenvironment is not very high and there are cavities around the ring. The conformation of the side chain of the tryptophan residue is unstrained. These results have been analysed in connection with available data on the unique short-wave fluorescence spectrum position and the existence of the high-frequency indole ring mobility with significant amplitude. Judging by the distance between tryptophan and tyrosine residues and their mutual orientation, the conclusion was made that there is no energy transfer from Tyr 72 to tryptophan and that the efficiency of the energy transfer from Tyr 108 to tryptophan is about 0.5. The mechanism of the dramatic increase in fluorescence efficiency when the copper atom is removed has been discussed with due regard to the fact that the 'blue' copper centre is displaced from the indole ring by more than 10 A.
对铜绿假单胞菌天青蛋白大分子结构中色氨酸残基定位的特殊分析,使得在现有文献中对该蛋白质非凡荧光特性的诸多解释得以证实,能够在各种相互矛盾的结论之间做出选择,甚至在某些情况下对已知实验数据做出新的解释。研究发现,色氨酸残基的微环境原则上由非极性烃基构成。微环境的密度不是很高,环周围存在空穴。色氨酸残基侧链的构象没有受到限制。结合关于独特的短波荧光光谱位置以及具有显著振幅的高频吲哚环流动性的现有数据,对这些结果进行了分析。根据色氨酸和酪氨酸残基之间的距离及其相互取向,得出的结论是不存在从Tyr 72到色氨酸的能量转移,并且从Tyr 108到色氨酸的能量转移效率约为0.5。考虑到“蓝色”铜中心与吲哚环的距离超过10 Å这一事实,讨论了去除铜原子时荧光效率急剧增加的机制。