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色氨酸介导的二硫键光还原导致豌豆镰刀菌角质酶出现异常荧光行为。

Tryptophan mediated photoreduction of disulfide bond causes unusual fluorescence behaviour of Fusarium solani pisi cutinase.

作者信息

Prompers J J, Hilbers C W, Pepermans H A

机构信息

NSR Center for Molecular Structure, Design and Synthesis, Laboratory of Biophysical Chemistry, University of Nijmegen, The Netherlands.

出版信息

FEBS Lett. 1999 Aug 13;456(3):409-16. doi: 10.1016/s0014-5793(99)00990-4.

Abstract

The fluorescence signal of the single tryptophan residue (Trp69) of Fusarium solani pisi cutinase is highly quenched. However, prolonged irradiation of the enzyme in the tryptophan absorption band causes an increase of the tryptophan fluorescence quantum yield by an order of magnitude. By using a combination of NMR spectroscopy and chemical detection of free thiol groups with a sulfhydryl reagent we could unambiguously show that the unusual fluorescence behaviour of Trp69 in cutinase is caused by the breaking of the disulfide bond between Cys31 and Cys109 upon irradiation, while the amide-aromatic hydrogen bond between Ala32 and Trp69 remains intact. This is the first example of tryptophan mediated photoreduction of a disulfide bond in proteins.

摘要

豌豆镰刀菌角质酶单个色氨酸残基(Trp69)的荧光信号被高度淬灭。然而,在色氨酸吸收带对该酶进行长时间照射会使色氨酸荧光量子产率提高一个数量级。通过结合使用核磁共振光谱法以及用巯基试剂对游离巯基进行化学检测,我们能够明确表明角质酶中Trp69异常的荧光行为是由于照射后Cys31和Cys109之间的二硫键断裂所致,而Ala32和Trp69之间的酰胺 - 芳香氢键保持完整。这是蛋白质中色氨酸介导的二硫键光还原的首个实例。

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