Swiss Federal Institute of Technology Lausanne (EPFL), Lausanne, Switzerland.
Division of Genetics, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA.
Nat Protoc. 2023 May;18(5):1379-1415. doi: 10.1038/s41596-023-00809-8. Epub 2023 Apr 5.
This Protocol Extension describes the adaptation of an existing Protocol detailing the use of targetable reactive electrophiles and oxidants, an on-demand redox targeting toolset in cultured cells. The adaptation described here is for use of reactive electrophiles and oxidants technologies in live zebrafish embryos (Z-REX). Zebrafish embryos expressing a Halo-tagged protein of interest (POI)-either ubiquitously or tissue specifically-are treated with a HaloTag-specific small-molecule probe housing a photocaged reactive electrophile (either natural electrophiles or synthetic electrophilic drug-like fragments). The reactive electrophile is then photouncaged at a user-defined time, enabling proximity-assisted electrophile-modification of the POI. Functional and phenotypic ramifications of POI-specific modification can then be monitored, by coupling to standard downstream assays, such as click chemistry-based POI-labeling and target-occupancy quantification; immunofluorescence or live imaging; RNA-sequencing and real-time quantitative polymerase chain reaction analyses of downstream-transcript modulations. Transient expression of requisite Halo-POI in zebrafish embryos is achieved by messenger RNA injection. Procedures associated with generation of transgenic zebrafish expressing a tissue-specific Halo-POI are also described. The Z-REX experiments can be completed in <1 week using standard techniques. To successfully execute Z-REX, researchers should have basic skills in fish husbandry, imaging and pathway analysis. Experience with protein or proteome manipulation is useful. This Protocol Extension is aimed at helping chemical biologists study precision redox events in a model organism and fish biologists perform redox chemical biology.
本协议扩展描述了对现有协议的改编,该协议详细说明了靶向反应性亲电试剂和氧化剂的使用,这是一种用于培养细胞的按需氧化还原靶向工具集。这里描述的改编是为了在活体斑马鱼胚胎(Z-REX)中使用反应性亲电试剂和氧化剂技术。表达感兴趣的 Halo 标记蛋白(POI)的斑马鱼胚胎-无论是普遍表达还是组织特异性表达-用 HaloTag 特异性小分子探针处理,该探针带有光笼闭的反应性亲电试剂(天然亲电试剂或合成亲电子药物样片段)。然后在用户定义的时间用光解笼,使 POI 能够进行接近辅助的亲电修饰。然后可以通过与标准下游测定法偶联来监测 POI 特异性修饰的功能和表型后果,例如基于点击化学的 POI 标记和靶标占有率定量;免疫荧光或活体成像;下游转录物调制的 RNA 测序和实时定量聚合酶链反应分析。通过信使 RNA 注射在斑马鱼胚胎中瞬时表达必需的 Halo-POI。还描述了生成表达组织特异性 Halo-POI 的转基因斑马鱼的相关程序。使用标准技术,Z-REX 实验可以在<1 周内完成。要成功执行 Z-REX,研究人员应该具备鱼类养殖、成像和途径分析的基本技能。具有蛋白质或蛋白质组操作经验将很有用。本协议扩展旨在帮助化学生物学家在模型生物中研究精确的氧化还原事件,以及鱼类生物学家进行氧化还原化学生物学研究。