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芘标记蛋白质表面的准分子发射特性:发射光谱、环堆积模式与芘探针柔韧性之间的相关性

Excimer emission properties on pyrene-labeled protein surface: correlation between emission spectra, ring stacking modes, and flexibilities of pyrene probes.

作者信息

Fujii Akira, Sekiguchi Yutaka, Matsumura Hiroyoshi, Inoue Tsuyoshi, Chung Wen-Sheng, Hirota Shun, Matsuo Takashi

机构信息

†Graduate School of Materials Science, Nara Institute of Science and Technology (NAIST), Ikoma, Nara 630-0192, Japan.

‡Department of Applied Chemistry, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

Bioconjug Chem. 2015 Mar 18;26(3):537-48. doi: 10.1021/acs.bioconjchem.5b00026. Epub 2015 Feb 18.

Abstract

The excimer emission of pyrene is popularly employed for investigating the association between pyrene-labeled biomolecules or between pyrene-labeled places in a biomolecule. The property of pyrene excimer emission is affected by the fluctuation in ring stacking modes, which originates from the structural flexibilities of pyrene probes and/or of labeled places. Investigations of the excimer emission in terms of dynamics of pyrene stacking modes provide the detailed spatial information between pyrene-labeled places. In order to evaluate the effects of probe structures and fluctuation in pyrene-pyrene association modes on their emission properties on protein surface, three types of pyrene probe with different linker lengths were synthesized and conjugated to two cysteine residues in the A55C/C77S/V169C mutant of adenylate kinase (Adk), an enzyme that shows a structural transition between OPEN and CLOSED forms. In the CLOSED form of Adk labeled by a pyrene probe with a short linker, excimer emission was found to be predominated by the ground-state association of pyrenes. The pyrene stacking structure on the protein surface was successfully determined by an X-ray crystallographic analysis. However, the emission decay in the protein suggested the existence of several stacking orientations in solution. With the increase in the linker length, the effect of fluctuation in pyrene association modes on the spectral properties distinctly emerged at both ground and excited states. The combination of steady-state and time-resolved spectroscopic analyses is useful for differentiation in the origin of the excimer emission, which is essential for precisely understanding the interaction fashions between pyrene-labeled biomolecules.

摘要

芘的准分子发射常用于研究芘标记的生物分子之间或生物分子中芘标记位点之间的关联。芘准分子发射的性质受环堆积模式波动的影响,这种波动源于芘探针和/或标记位点的结构灵活性。从芘堆积模式的动力学角度研究准分子发射,可提供芘标记位点之间详细的空间信息。为了评估探针结构和芘-芘缔合模式的波动对其在蛋白质表面发射性质的影响,合成了三种具有不同连接子长度的芘探针,并将其与腺苷酸激酶(Adk)的A55C/C77S/V169C突变体中的两个半胱氨酸残基偶联,Adk是一种在开放和关闭形式之间呈现结构转变的酶。在由短连接子的芘探针标记的Adk的关闭形式中,发现准分子发射主要由芘的基态缔合主导。通过X射线晶体学分析成功确定了蛋白质表面的芘堆积结构。然而,蛋白质中的发射衰减表明溶液中存在几种堆积取向。随着连接子长度的增加,芘缔合模式波动对光谱性质的影响在基态和激发态均明显显现。稳态和时间分辨光谱分析的结合有助于区分准分子发射的起源,这对于精确理解芘标记的生物分子之间的相互作用方式至关重要。

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