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An Activity-Based Methionine Bioconjugation Approach To Developing Proximity-Activated Imaging Reporters

机译:一种基于活性的蛋氨酸生物杂交方法,用于开发近激活的成像报告者

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摘要

Chemical probes that report on protein activity, rather than protein abundance, with spatial and temporal resolution can enable studies of their native function in biological contexts as well as provide opportunities for developing new types of biochemical reporters. Here we present a sensing platform, termed proximity-activated imaging reporter (PAIR), which combines activity-based methionine bioconjugation and antibody labeling with proximity-dependent oligonucleotide-based amplification to monitor dynamic changes of a given analyte in cells and animals through context-dependent methionine labeling of specific protein targets. We establish this PAIR method to develop sensors for imaging reactive oxygen species (ROS) and calcium ions through oxaziridine-directed labeling of reactive methionine residues on β-actin and calmodulin (CaM), respectively, where the extent of methionine bioconjugation on these protein targets can serve as an indicator of oxidative stress or calcium status. In particular, application of PAIR to activity-based CaM detection provides a method for imaging integrated calcium activity in both in vitro cell and in vivo zebrafish models. By relying on native protein biochemistry, PAIR enables redox and metal imaging without introduction of external small molecules or genetically encoded indicators that can potentially buffer the natural/existing pools. This approach can be potentially generalized to target a broader range of analytes by pairing appropriate activity-based protein probes with protein detection reagents in a proximity-driven manner, providing a starting point not only for designing new sensors but also for monitoring endogenous activity of specific protein targets in biological specimens with spatial and temporal fidelity.
机译:蛋白质活性报告的化学探针,而不是蛋白质丰富,具有空间和时间分辨率,可以在生物背景下研究其原生功能,并为开发新型生化记者提供机会。在这里,我们提出了一种感测平台,称为接近活化的成像报告器(对),其将基于活性的蛋氨酸生物静脉曲化和抗体标记与基于邻近的寡核苷酸的扩增相结合,以通过背景来监测细胞和动物中给定分析物的动态变化 - 特定蛋白靶标依赖性蛋氨酸标记。我们建立该对方法以通过β-肌动蛋白和钙调蛋白(CAM)的反应蛋氨酸残基的反应性蛋氨酸残基的标记分别开发用于成像反应性氧物质(ROS)和钙离子的传感器,其中这些蛋白质靶标的蛋氨酸生物缀合程度可以用作氧化应激或钙地位的指示。特别地,对基于活性的CAM检测的应用提供了一种用于在体外细胞和体内斑马鱼模型中成像钙活性的方法。通过依赖于天然蛋白质生物化学,对使氧化还原和金属成像能够引入外部小分子或遗传编码的指标,这些指标可能会缓冲自然/现有池。这种方法可能是推广的,以通过以近距离驱动的方式与蛋白质检测试剂配对适当的活性基蛋白质探针来靶向更广泛的分析物,不仅为设计新传感器而且用于监测特定的内源性活性的起点具有空间和时间保真度的生物标本中的蛋白质靶标。

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