嘌呤霉素
过氧化氢
共焦
化学
细胞培养
生物化学
免疫印迹
活性氧
染色
分子生物学
细胞生物学
生物
蛋白质生物合成
基因
几何学
遗传学
数学
作者
Kaede Hoshi,Marco S. Messina,Jun Ohata,Clive Yik‐Sham Chung,Christopher J. Chang
出处
期刊:Nature Protocols
[Springer Nature]
日期:2022-05-13
卷期号:17 (7): 1691-1710
被引量:7
标识
DOI:10.1038/s41596-022-00694-7
摘要
Hydrogen peroxide (H2O2) is a key member of the reactive oxygen species family of transient small molecules that has broad contributions to oxidative stress and redox signaling. The development of selective and sensitive chemical probes can enable the study of H2O2 biology in cell, tissue and animal models. Peroxymycin-1 is a histochemical activity–based sensing probe that responds to H2O2 via chemoselective boronate oxidation to release puromycin, which is then covalently incorporated into nascent proteins by the ribosome and can be detected by antibody staining. Here, we describe an optimized two-step, one-pot protocol for synthesizing Peroxymycin-1 with improved yields over our originally reported procedure. We also present detailed procedures for applying Peroxymycin-1 to a broad range of biological samples spanning cells to animal tissues for profiling H2O2 levels through histochemical detection by using commercially available anti-puromycin antibodies. The preparation of Peroxymycin-1 takes 9 h, the confocal imaging experiments of endogenous H2O2 levels across different cancer cell lines take 1 d, the dot blot analysis of mouse liver tissues takes 1 d and the confocal imaging of mouse liver tissues takes 3–4 d. This protocol details the synthesis and use of Peroxymycin-1, an activity-based histochemical probe for hydrogen peroxide detection in fixed cell and mouse tissue samples.
科研通智能强力驱动
Strongly Powered by AbleSci AI