首页> 外文期刊>Journal of Fluorescence >Conformational Flexibility of Cytokine-Like C-Module of Tyrosyl-tRNA Synthetase Monitored by Trp144 Intrinsic Fluorescence
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Conformational Flexibility of Cytokine-Like C-Module of Tyrosyl-tRNA Synthetase Monitored by Trp144 Intrinsic Fluorescence

机译:Trp144本征荧光监测酪氨酰tRNA合成酶的细胞因子样C模块的构象灵活性。

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摘要

The non-catalytic COOH-terminal module formed after proteolytic cleavage of full-length mammalian tyrosyl-tRNA synthetase displays dual function: tRNA binding ability and cytokine activity. With the aim to explore the intramolecular dynamics of C-module in solution we used fluorescence spectroscopy to study conformational changes of isolated protein. We used information from fluorescence spectra and computational model for characterization of a microenvironment of a single tryptophan residue (Trp144). Its fluorescence parameters and protection from quenching by Cs+ ions indicate the internal localization—buried into protein globule. The fluorescence quenching of Trp144 by acrylamide suggests rapid conformation dynamics of the C-module in nanosecond time scale. The temperature-induced conformational changes in the C-module were monitored by the fluorescence measurements of Trp144 emission and by red-edge excitation shift. An emission maximum shift up to ∼349 nm and significant decrease of the red-edge shift effect at 37–52 °C indicated a major conformational transition of Trp144 from buried native state into highly relaxing polar solvent environment.
机译:蛋白水解裂解全长哺乳动物酪氨酰-tRNA合成酶后形成的非催化COOH末端模块显示双重功能:tRNA结合能力和细胞因子活性。为了探索溶液中C-模块的分子内动力学,我们使用荧光光谱研究了分离蛋白的构象变化。我们使用了来自荧光光谱和计算模型的信息来表征单个色氨酸残基(Trp144)的微环境。它的荧光参数和对Cs + 离子猝灭的保护表明了内部定位-埋在蛋白质小球中。丙烯酰胺对Trp144的荧光猝灭表明,C-模块在纳秒级时域中具有快速构象动力学。通过Trp144发射的荧光测量和红边激发位移来监测温度引起的C模块构象变化。发射最大位移高达349 nm,并且在37–52°C时红边移动效应显着降低,这表明Trp144的主要构象转变是从掩埋的原始态转变为高度松弛的极性溶剂环境。

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