Related Experiment Video
Updated: Jan 19, 2026
Double-strand Breaks DSB & Nonhomologous End Joining NHEJ
Macrocyclic colibactin induces DNA double-strand breaks via copper-mediated oxidative cleavage
Zhong-Rui Li1,2, Jie Li3,4, Wenlong Cai2
1Department of Ocean Science and Division of Life Science, The Hong Kong University of Science and Technology, Kowloon, Hong Kong, China.
Abstract:
Colibactin is an assumed human gut bacterial genotoxin, whose biosynthesis is linked to the clb genomic island that has a widespread distribution in pathogenic and commensal human enterobacteria. Colibactin-producing gut microbes promote colon tumour formation and enhance the progression of colorectal cancer via cellular senescence and death induced by DNA double-strand breaks (DSBs); however, the chemical basis that contributes to the pathogenesis at the molecular level has not been fully characterized. Here, we report the discovery of colibactin-645, a macrocyclic colibactin metabolite that recapitulates the previously assumed genotoxicity and cytotoxicity. Colibactin-645 shows strong DNA DSB activity in vitro and in human cell cultures via a unique copper-mediated oxidative mechanism. We also delineate a complete biosynthetic model for colibactin-645, which highlights a unique fate of the aminomalonate-building monomer in forming the C-terminal 5-hydroxy-4-oxazolecarboxylic acid moiety through the activities of both the polyketide synthase ClbO and the amidase ClbL. This work thus provides a molecular basis for colibactin's DNA DSB activity and facilitates further mechanistic study of colibactin-related colorectal cancer incidence and prevention.
Related Concept Videos
Fixing Double-strand Breaks
Fixing Double-strand Breaks
07:46Detection of DNA Double-Stranded Breaks in Mouse Oocytes
05:23Immunofluorescence Microscopy for the Analysis of DNA Double-Strand Breaks
13:10Analysis of DNA Double-strand Break (DSB) Repair in Mammalian Cells
09:07Live-Cell Imaging of Transcriptional Activity at DNA Double-Strand Breaks

