首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Stereoselectivity of Electron and Energy Transfer in the Quenching of (S/R)-Ketoprofen-(S)-Tryptophan Dyad Excited State
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Stereoselectivity of Electron and Energy Transfer in the Quenching of (S/R)-Ketoprofen-(S)-Tryptophan Dyad Excited State

机译:(S / R)-KetopropoOfen-(s) - 基因酮 - 转基因激发态淬火的电子和能量转移的立体选择性

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摘要

Photoinduced elementary processes in chiral linked systems, consisting of drugs and tryptophan (Trp) residues, attract considerable attention due to several aspects. First of all, these are models that allow one to trace the full and partial charge transfer underlying the binding of drugs to enzymes and receptors. On the other hand, Trp fluorescence is widely used to establish the structure and conformational mobility of proteins due to its high sensitivity to the microenvironment. Therefore, the study of mechanisms of Trp fluorescence quenching in various systems has both fundamental and practical interest. An analysis of the photo-chemically induced dynamic nuclear polarization (CIDNP) and Trp fluorescence quenching in ( / )-ketoprofen-( )-tryptophan (( / )-KP-( )-Trp) dyad carried out in this work allowed us to trace the intramolecular reversible electron transfer (ET) and obtain evidence in favor of the resonance energy transfer (RET). The fraction of dyad’s singlet excited state, quenched via ET, was shown to be 7.5 times greater for the ( , )-diastereomer than for the ( , ) analog. At the same time, the ratio of the fluorescence quantum yields shows that quenching effectiveness of ( , )-diastereomer to be 5.4 times lower than for the ( , ) analog. It means that the main mechanism of Trp fluorescence quenching in ( / )-KP-( )-Trp dyad is RET.
机译:通过药物和色氨酸(TRP)残留物的手性链接系统中的光诱导的基本方法,由于几个方面,吸引了相当大的关注。首先,这些是允许一个追踪药物与酶和受体的结合的完整和部分电荷转移的模型。另一方面,由于其对微环境的高敏感性,TRP荧光广泛用于建立蛋白质的结构和构象迁移率。因此,各种系统中TRP荧光猝灭机制的研究具有基本和实际的兴趣。在这项工作中进行的(/)-Kethopropen-() - (/)-KP-() - 在这项工作中进行的((/)-KP-()-TRP)DYAD中的光学诱导的动态核极化(CIDNP)和TRP荧光猝灭的分析使我们允许我们追踪分子内可逆电子转移(ET)并获得有利于共振能量转移(RET)的证据。通过ET淬火的Dyad的单线态激发态的分数显示为()-DiaSteReoremer的比例为()类似物的7.5倍。同时,荧光量子产率的比例表明(,) - 抗核体的淬火效果比()模拟的5.4倍。这意味着(/)-KP-()-TRP二元的TRP荧光猝灭的主要机制是RET。

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