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炔基标记的喇曼探针通过氘氢交换进行局部环境感应。

Alkyne-Tagged Raman Probes for Local Environmental Sensing by Hydrogen-Deuterium Exchange.

机构信息

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States.

出版信息

J Am Chem Soc. 2022 May 18;144(19):8504-8514. doi: 10.1021/jacs.2c01991. Epub 2022 May 4.

Abstract

Alkyne-tagged Raman probes have shown high promise for noninvasive and sensitive visualization of small biomolecules to understand their functional roles in live cells. However, the potential for alkynes to sense cellular environments that goes beyond imaging remains to be further explored. Here, we report a general strategy for Raman imaging-based local environment sensing by hydrogen-deuterium exchange (HDX) of terminal alkynes (termed alkyne-HDX). We first demonstrate, in multiple Raman probes, that deuterations of the alkynyl hydrogens lead to remarkable shifts of alkyne Raman peaks for about 130 cm, providing resolvable signals suited for imaging-based analysis with high specificity. Both our analytical derivation and experimental characterizations subsequently establish that HDX kinetics are linearly proportional to both alkyne ps and environmental pDs. After validating the quantitative nature of this strategy, we apply alkyne-HDX to sensing local chemical and cellular environments. We establish that alkyne-HDX exhibits high sensitivity to various DNA structures and demonstrates the capacity to detect DNA structural changes from UV-induced damage. We further show that this strategy is also applicable to resolve subtle pD variations in live cells. Altogether, our work lays the foundation for utilizing alkyne-HDX strategy to quantitatively sense the local environments for a broad spectrum of applications in complex biological systems.

摘要

炔基标记的拉曼探针在非侵入性和灵敏地可视化小分子方面显示出巨大的潜力,有助于了解它们在活细胞中的功能作用。然而,炔基对细胞环境的潜在感知能力,除了成像之外,还有待进一步探索。在这里,我们报告了一种基于拉曼成像的通过末端炔烃的氘氢交换(称为炔烃-HDX)进行局部环境感应的通用策略。我们首先在多个拉曼探针中证明,炔基氢的氘化会导致炔烃拉曼峰显著移动约 130cm,提供了可分辨的信号,适合具有高特异性的成像分析。我们的分析推导和实验特性随后都证实,HDX 动力学与炔烃 ps 和环境 pD 均呈线性正比。在验证了该策略的定量性质后,我们将炔烃-HDX 应用于局部化学和细胞环境的感应。我们证实了炔烃-HDX 对各种 DNA 结构具有高灵敏度,并证明了其检测 DNA 结构变化的能力,包括由 UV 诱导的损伤。我们进一步表明,该策略也适用于解析活细胞中细微的 pD 变化。总之,我们的工作为利用炔烃-HDX 策略定量感应复杂生物系统中广泛应用的局部环境奠定了基础。

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