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Protein Dynamics Studied by Room Temperature Phosphorescence Spectroscopy

机译:通过室温磷光光谱研究的蛋白质动力学

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Proteins are fundamentally dynamic entities, undergoing conformational changes in response to interaction with ligands during the performance of their biological function, or during the process of folding into their final, biologically active, structures. Advanced transient laser spectroscopy techniques based on intrinsic chromophores provides a powerful means to study these changes. Specifically, time-resolved phosphorescence of tryptophan (Trp) provides a means to observe the dynamics associated with different regions of the protein surrounding the emitting Trp residue. Using these methodologies, we have been able to demonstrate intrinsic equilibrium conformational heterogeneity in proteins, and have been able to study, in real time, slow events in the unfolding and refolding of these macromolecules. In addition, we have used circularly polarized phosphorescence to report on the chirality of the excited triplet state of Trp, which enables us to resolve two or more phosphorescing Trps with similar lifetimes. We briefly summarize some of these results, and present new room temperature phosphorescence (RTP) data characterizing the trifluoroethanol (TFE) induced β-sheet to α-helix transition in the bovine milk protein, β-lactoglobulin A.
机译:蛋白质是基本上的动态实体,经历了在其生物学功能的性能期间与配体相互作用的构象变化,或在折叠到最终,生物活性,结构的过程中。基于内在发色团的先进的瞬态激光光谱技术提供了一种研究这些变化的强大方法。具体地,色氨酸(TRP)的时间分辨磷光提供了观察与发射TRP残基的蛋白质不同区域相关的动态的手段。使用这些方法,我们能够在蛋白质中展示内在的平衡构象异质性,并且能够实时学习展开和重折叠这些大分子的慢速事件。此外,我们已经使用圆偏振磷光来报告TRP的激发三重态状态的手性,这使得我们能够解决具有类似寿命的两种或更多种磷酸型TRP。我们简要概述了这些结果中的一些,并将新的室温磷光(RTP)数据表征在牛奶蛋白,β-乳酰脲A中的三氟乙醇(TFE)诱导β-薄膜转变为α-螺旋过渡。

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