Tran C D, Beddard G S
Eur Biophys J. 1985;13(1):59-64. doi: 10.1007/BF00266310.
The fluorescence lifetime and rotational correlation time of the tryptophan residue in melittin, as both a monomer and tetramer, have been measured between pH 6 and 11. The fluorescence decays are non-exponential and give lifetimes of 0.7 +/- 0.1 ns and 3.1 +/- 0.1 ns. This emission is consistent with a model in which the tryptophan residue is in slightly different environments in the protein. In a dilute solution of monomer the mean fluorescence lifetime is 2.3 +/- 0.1 ns, below pH 10, but falls to 1.7 ns at higher pH. In contrast, the melittin tetramer has a mean fluorescence lifetime of only 2.2 ns at pH 6, which falls to 1.9 ns by pH 8, and falls again above pH 10 to the same value as in monomeric melittin. The behaviour between pH 6 and 8 is explained as the quenching of the Trp residue by lysine groups, which are near to the Trp in the tetramer but in the monomer, are too distant to quench. Fluorescence anisotropy decays show that the Trp residue has considerable freedom of motion and the range of "wobbling" motion is 35 +/- 10 degrees in the tetramer.
已在pH 6至11之间测量了蜂毒肽作为单体和四聚体时色氨酸残基的荧光寿命和旋转相关时间。荧光衰减是非指数性的,寿命分别为0.7±0.1纳秒和3.1±0.1纳秒。这种发射与一种模型一致,即色氨酸残基在蛋白质中的环境略有不同。在单体的稀溶液中,低于pH 10时平均荧光寿命为2.3±0.1纳秒,但在较高pH时降至1.7纳秒。相比之下,蜂毒肽四聚体在pH 6时平均荧光寿命仅为2.2纳秒,到pH 8时降至1.9纳秒,在pH 10以上又降至与单体蜂毒肽相同的值。pH 6至8之间的行为被解释为色氨酸残基被赖氨酸基团淬灭,在四聚体中赖氨酸基团靠近色氨酸,但在单体中距离太远无法淬灭。荧光各向异性衰减表明色氨酸残基具有相当大的运动自由度,在四聚体中“摆动”运动的范围为35±10度。