Chrom-seq identifies RNAs at chromatin marks

Publication date

2024-07-31

Authors

Fan, Ligang
Sun, Wei
Lyu, Yitong
Ju, Furong
Sun, Wenju
Chen, Jie
Ma, Haiqian
Yang, Shifei
Zhou, Xiaomin
Wu, Nan

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

cc_by

Abstract

Chromatin marks are associated with transcriptional regulatory activities. However, very few lncRNAs have been characterized with the role in regulating epigenetic marks, largely due to the technical difficulty in identifying chromatin-associating RNA. Current methods are largely limited by the availability of ChIP-grade antibody and the crosslinking, which generates high noise. Here, we developed a method termed Chrom-seq to efficiently capture RNAs associated with various chromatin marks in living cells. Chrom-seq jointly applies highly specific chromatin mark reader with APEX2, which catalyzes the oxidation of biotin-aniline to label the adjacent RNAs for isolation by streptavidin-coated beads. Using the readers of mCBX7/dPC, mCBX1, and mTAF3, we detected RNA species significantly associated with H3K27me3, H3K9me3, and H3K4me3, respectively. We demonstrated that Chrom-seq outperformed other equivalent methods in terms of sensitivity, efficiency, and cost of practice. It provides an antibody-free approach to systematically map RNAs at chromatin marks with potential regulatory roles in epigenetic events.

Keywords

Complex, Contributes, Domains, Gene-expression, Histone h3, Setdb1

Citation

Fan, L, Sun, W, Lyu, Y, Ju, F, Sun, W, Chen, J, Ma, H, Yang, S, Zhou, X, Wu, N, Yi, W, Chen, E, Villasenor, R, Baubec, T & Yan, J 2024, 'Chrom-seq identifies RNAs at chromatin marks', Science advances, vol. 10, no. 31, eadn1397. https://doi.org/10.1126/sciadv.adn1397