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聚集及与脂质体相互作用时疏水模型肽中色氨酸所处环境的深入研究:稳态及时间分辨荧光研究

Insight into the environment of tryptophan in a hydrophobic model peptide upon aggregation and interaction with lipid vesicles: a steady state and time resolved fluorescence study.

作者信息

Joseph M, Nagaraj R

机构信息

Centre for Cellular and Molecular Biology, Hyderabad, India.

出版信息

Indian J Biochem Biophys. 1998 Apr;35(2):67-75.

PMID:9753864
Abstract

Fluorescence spectroscopy is extensively used to monitor binding of peptides to lipid vesicles as well as orientation in the lipid bilayer. In steady-state fluorescence, the emission characteristics of intrinsic and extrinsic fluorophores, which are sensitive to environment are monitored. Life time measurements should yield useful information about the location and flexibility of fluorophores, as these factors have a significant effect on the life times. However, studies on protein structure and dynamics indicate that interpretation of life-time data is complicated (Beechem. J.M. and Brand, L. (1985) Annu. Rev. Biochem. 54, 43-71). Hence, simple well-defined systems should help in interpretation of life time data, especially in lipid-peptide interactions. In order to examine how fluorescence characteristics of tryptophan and anthroyl group would reflect molecular details of peptide aggregation and lipid-peptide interaction, studies have been carried out on a model hydrophobic peptide and its fatty acylated derivative. Steady-state fluorescence measurements suggest that: (1) the fatty acyl chain attached to an amino acid associates with the peptide chain in aqueous environment. (2) In the lipid bilayer, the acyl chain is oriented perpendicular to the lipid bilayer surface with the peptide chain at an angle to it. Analysis of the fluorescence decay of tryptophan indicates the predominance of a very short life-time component (<1ns) in aqueous environment and lipid-vesicles. Since the preexponentials were not negative, it is unlikely that this is due to extensive deactivation process. We attribute the observation of the low life time component to predominance of one rotamer around (C alpha-C beta)bond of tryptophan in aqueous and lipid environments. Our investigations suggest that fluorescence life time data need to be complemented with steady state measurements to get an insight into details of lipid-peptide interaction.

摘要

荧光光谱法被广泛用于监测肽与脂质囊泡的结合以及在脂质双层中的取向。在稳态荧光中,监测对环境敏感的内在和外在荧光团的发射特性。寿命测量应该能提供有关荧光团位置和灵活性的有用信息,因为这些因素对寿命有显著影响。然而,对蛋白质结构和动力学的研究表明,寿命数据的解释很复杂(Beechem. J.M.和Brand, L.(1985年)《生物化学年度评论》54卷,43 - 71页)。因此,简单明确的系统有助于解释寿命数据,特别是在脂质 - 肽相互作用方面。为了研究色氨酸和蒽酰基的荧光特性如何反映肽聚集和脂质 - 肽相互作用的分子细节,对一种模型疏水肽及其脂肪酰化衍生物进行了研究。稳态荧光测量表明:(1)连接到氨基酸上的脂肪酰链在水环境中与肽链缔合。(2)在脂质双层中,酰链垂直于脂质双层表面取向,肽链与之成一定角度。色氨酸荧光衰减分析表明,在水环境和脂质囊泡中,寿命极短的成分(<1ns)占主导。由于前指数不为负,这不太可能是由于广泛的失活过程。我们将低寿命成分的观察结果归因于在水环境和脂质环境中色氨酸围绕(Cα - Cβ)键的一种旋转异构体占主导。我们的研究表明,荧光寿命数据需要辅以稳态测量,以便深入了解脂质 - 肽相互作用的细节。

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