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环状六肽中肽键对色氨酸荧光的分子内淬灭作用。

Intramolecular quenching of tryptophan fluorescence by the peptide bond in cyclic hexapeptides.

作者信息

Adams Paul D, Chen Yu, Ma Kan, Zagorski Michael G, Sönnichsen Frank D, McLaughlin Mark L, Barkley Mary D

机构信息

Department of Chemistry, Case Western Reserve University, Cleveland, Ohio 44106-7078, USA.

出版信息

J Am Chem Soc. 2002 Aug 7;124(31):9278-86. doi: 10.1021/ja0167710.

Abstract

Intramolecular quenching of tryptophan fluorescence by protein functional groups was studied in a series of rigid cyclic hexapeptides containing a single tryptophan. The solution structure of the canonical peptide c[D-PpYTFWF] (pY, phosphotyrosine) was determined in aqueous solution by 1D- and 2D-(1)H NMR techniques. The peptide backbone has a single predominant conformation. The tryptophan side chain has three chi(1) rotamers: a major chi(1) = -60 degrees rotamer with a population of 0.67, and two minor rotamers of equal population. The peptides have three fluorescence lifetimes of about 3.8, 1.8, and 0.3 ns with relative amplitudes that agree with the chi(1) rotamer populations determined by NMR. The major 3.8-ns lifetime component is assigned to the chi(1) = -60 degrees rotamer. The multiple fluorescence lifetimes are attributed to differences among rotamers in the rate of excited-state electron transfer to peptide bonds. Electron-transfer rates were calculated for the six preferred side chain rotamers using Marcus theory. A simple model with reasonable assumptions gives excellent agreement between observed and calculated lifetimes for the 3.8- and 1.8-ns lifetimes and assigns the 1.8-ns lifetime component to the chi(1) = 180 degrees rotamer. Substitution of phenylalanine by lysine on either side of tryptophan has no effect on fluorescence quantum yield or lifetime, indicating that intramolecular excited-state proton transfer catalyzed by the epsilon-ammonium does not occur in these peptides.

摘要

在一系列含有单个色氨酸的刚性环状六肽中,研究了蛋白质官能团对色氨酸荧光的分子内猝灭作用。通过一维和二维(1)H NMR技术测定了典型肽c[D-PpYTFWF](pY,磷酸酪氨酸)在水溶液中的溶液结构。肽主链具有单一的主要构象。色氨酸侧链有三种χ1旋转异构体:一种主要的χ1 = -60°旋转异构体,丰度为0.67,以及两种丰度相等的次要旋转异构体。这些肽具有三个荧光寿命,分别约为3.8、1.8和0.3 ns,其相对振幅与通过NMR测定的χ1旋转异构体丰度一致。主要的3.8 ns寿命成分归属于χ1 = -60°旋转异构体。多个荧光寿命归因于旋转异构体在激发态电子转移到肽键的速率上的差异。使用Marcus理论计算了六种优选侧链旋转异构体的电子转移速率。一个具有合理假设的简单模型在3.8 ns和1.8 ns寿命的观察值和计算值之间给出了极好的一致性,并将1.8 ns寿命成分归属于χ1 = 180°旋转异构体。在色氨酸两侧用赖氨酸取代苯丙氨酸对荧光量子产率或寿命没有影响,表明在这些肽中不存在由ε-铵催化的分子内激发态质子转移。

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