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Updated: Jan 11, 2026

Genome-wide Mapping of Drug-DNA Interactions in Cells with COSMIC Crosslinking of Small Molecules to Isolate Chromatin
Published on: January 20, 2016
Systematic Study of the Impact of DNA Interstrand Cross-Links on Nucleosome Structure, Sliding, and Transcription
Xiajing Shan1, Jiahui Li1, Jingke Ma1
1State Key Laboratory of Elemento-Organic Chemistry, Frontiers Science Center for New Organic Matter, Department of Chemical Biology, College of Chemistry, Nankai University, Tianjin 300071, China.
Abstract:
DNA interstrand cross-links (ICLs) covalently link complementary DNA strands and represent one of the most cytotoxic forms of DNA damage. While their impact on free DNA has been extensively characterized, how ICLs influence nucleosomes─the fundamental units of chromatin─remains largely unexplored. Here, we generated nucleosomes containing site-specific ICLs using click chemistry and systematically examined their effects on nucleosome structure, dynamics, and transcription. Biophysical assays revealed that ICLs did not impair nucleosome assembly, DNA accessibility, or ATP-dependent sliding, and only slightly reduced nucleosome stability. However, in vitro transcription assays demonstrated that ICLs function as absolute barriers to RNA polymerase elongation, producing truncated transcripts that terminate precisely at the cross-linking site in both free DNA and nucleosomal contexts. Restriction enzyme protection assays further showed that transcription-induced nucleosome translocation was unaffected, indicating that arrest results from the inability of the elongation complex to separate cross-linked strands rather than impaired nucleosome mobility. These findings provide mechanistic insight into ICL-induced cytotoxicity at the chromatin level and establish site-specific cross-linked nucleosomes as valuable tools for probing DNA damage responses.
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