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首页> 外文期刊>Angewandte Chemie >Redesign of a Fluorogenic Labeling System To Improve Surface Charge, Brightness, and Binding Kinetics for Imaging the Functional Localization of Bromodomains
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Redesign of a Fluorogenic Labeling System To Improve Surface Charge, Brightness, and Binding Kinetics for Imaging the Functional Localization of Bromodomains

机译:重新设计荧光标记系统,以改善表面电荷,亮度和结合动力学,以成像溴结构域的功能定位

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摘要

Protein labeling with fluorogenic probes is a powerful method for the imaging of cellular proteins. The labeling time and fluorescence contrast of the fluorogenic probes are critical factors for the precise spatiotemporal imaging of protein dynamics in living cells. To address these issues, we took mutational and chemical approaches to increase the labeling kinetics and fluorescence intensity of fluorogenic PYP-tag probes. Because of charge-reversal mutations in PYP-tag and probe redesign, the labeling reaction was accelerated by a factor of 18 in vitro, and intracellular proteins were detected with an incubation period of only 1 min. The brightness of the probe both in vitro and in living cells was enhanced by the mutant tag. Furthermore, we applied this system to the imaging analysis of bromodomains. The labeled mutant tag successfully detected the localization of bromodomains to acetylhistone and the disruption of the bromodomain-acetylhistone interaction by a bromodomain inhibitor.
机译:用荧光探针标记蛋白质是对细胞蛋白质成像的有力方法。荧光探针的标记时间和荧光对比是活细胞中蛋白质动力学精确时空成像的关键因素。为了解决这些问题,我们采用了突变和化学方法来增加荧光PYP标签探针的标记动力学和荧光强度。由于PYP标签的电荷反转突变和探针的重新设计,在体外标记反应被加速了18倍,并且仅1分钟的潜伏期就检测到了细胞内蛋白质。突变标签提高了探针在体外和活细胞中的亮度。此外,我们将该系统应用于溴结构域的成像分析。标记的突变标签成功检测到溴结构域对乙酰组蛋白的定位以及溴结构域抑制剂对溴结构域-乙酰组蛋白相互作用的破坏。

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