Reverse Chromatin Immunoprecipitation (R-ChIP) enables investigation of the upstream regulators of plant genes.
Xuejing WenJingxin WangDaoyuan ZhangYu DingXiaoyu JiZilong TanYu-Cheng WangPublished in: Communications biology (2020)
DNA binding proteins carry out important and diverse functions in the cell, including gene regulation, but identifying these proteins is technically challenging. In the present study, we developed a technique to capture DNA-associated proteins called reverse chromatin immunoprecipitation (R-ChIP). This technology uses a set of specific DNA probes labeled with biotin to isolate chromatin, and the DNA-associated proteins are then identified using mass spectrometry. Using R-ChIP, we identified 439 proteins that potentially bind to the promoter of the Arabidopsis thaliana gene AtCAT3 (AT1G20620). According to functional annotation, we randomly selected 5 transcription factors from these candidates, including bZIP1664, TEM1, bHLH106, BTF3, and HAT1, to verify whether they in fact bind to the AtCAT3 promoter. The binding of these 5 transcription factors was confirmed using chromatin immunoprecipitation quantitative real-time PCR and electrophoretic mobility shift assays. In addition, we improved the R-ChIP method using plants in which the DNA of interest had been transiently introduced, which does not require the T-DNA integration, and showed that this substantially improved the protein capture efficiency. These results together demonstrate that R-ChIP has a wide application to characterize chromatin composition and isolate upstream regulators of a specific gene.
Keyphrases
- transcription factor
- circulating tumor
- genome wide identification
- circulating tumor cells
- single molecule
- cell free
- genome wide
- dna binding
- high throughput
- gene expression
- dna damage
- mass spectrometry
- arabidopsis thaliana
- nucleic acid
- stem cells
- single cell
- copy number
- cell therapy
- mesenchymal stem cells
- small molecule
- photodynamic therapy
- binding protein
- cell wall
- protein protein
- pet imaging
- simultaneous determination
- rna seq