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溶菌酶中色氨酸的荧光寿命

Tryptophan fluorescence lifetimes in lysozyme.

作者信息

Formoso C, Forster L S

出版信息

J Biol Chem. 1975 May 25;250(10):3738-45.

PMID:236300
Abstract

Tryptophan fluorescence lifetimes at pH 2 and pH 8 have been obtained for lysozyme and for lysozyme derivatives in which tryptophan-62 or tryptophan-108 or both are nonfluorescent. The lifetimes range from about 0.5 ns to 2.8 ns for the various emitting tryptophans. The tryptophan lifetimes appear to increase with exposure of tryptophan to solvent, but intramolecular contacts, probably with cystine residues, can considerably shorten the lifetime. Intertryptophanyl interactions can also affect fluorescence lifetimes. The trytophan-108 lifetime in lysozyme is shorter than in the derivative in which tryptophan-62 is oxidized; this is ascribed to energy transfer from tryptophan-108 to tryptophan-62. From the lifetime results the relative intensities emitted by specific tryptophans can be estimated, and these values also support the existence of intertryptophanyl energy transfer. The emission intensity from tryptophan-62 is greater in the presence of tryptophan-108, and the emission intensity of tryptophan-108 appears to be greater in the absence of tryptophan-62. Conformational effects accompanying chemical modification of tryptophan cannot be completely ruled out, however. The tryptophan-62 lifetime at pH 8 in lysozyme is shorter than in the derivatives, which might indicate a subtle conformational effect. Studies with tri-(N-acetyl-glucosamine)-protein complexes indicate that both the tryptophan lifetimes and the number of emitting tryptophans may be changing upon complexation. The results illustrate the usefulness and the limitations of lifetime measurements in understanding protein fluorescence.

摘要

已获得溶菌酶及其衍生物在pH 2和pH 8条件下的色氨酸荧光寿命,其中色氨酸-62或色氨酸-108或两者均无荧光。各种发射色氨酸的寿命范围约为0.5纳秒至2.8纳秒。色氨酸寿命似乎随着色氨酸暴露于溶剂而增加,但分子内接触(可能与胱氨酸残基)可显著缩短寿命。色氨酸间相互作用也会影响荧光寿命。溶菌酶中色氨酸-108的寿命比色氨酸-62被氧化的衍生物中的寿命短;这归因于从色氨酸-108到色氨酸-62的能量转移。根据寿命结果可以估计特定色氨酸发射的相对强度,这些值也支持色氨酸间能量转移的存在。在有色氨酸-108存在的情况下,色氨酸-62的发射强度更大,而在无色氨酸-62存在的情况下,色氨酸-108的发射强度似乎更大。然而,不能完全排除色氨酸化学修饰伴随的构象效应。溶菌酶在pH 8时色氨酸-62的寿命比衍生物中的短,这可能表明存在微妙的构象效应。对三(N-乙酰葡糖胺)-蛋白质复合物的研究表明,在形成复合物时,色氨酸寿命和发射色氨酸的数量可能都会发生变化。这些结果说明了寿命测量在理解蛋白质荧光方面的有用性和局限性。

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