Reactivity of an Unusual Amidase May Explain Colibactin’s DNA Cross-Linking Activity

Yindi Jiang(Harvard University), Alessia Stornetta(University of Minnesota), Peter W. Villalta(University of Minnesota), Matthew R. Wilson(Harvard University), Paul D. Boudreau(Harvard University), Li Zha(Harvard University), Silvia Balbo(University of Minnesota), Emily P. Balskus(Harvard University)
Journal of the American Chemical Society
June 28, 2019
Cited by 70Open Access
Full Text

Abstract

Certain commensal and pathogenic bacteria produce colibactin, a small-molecule genotoxin that causes interstrand cross-links in host cell DNA. Although colibactin alkylates DNA, the molecular basis for cross-link formation is unclear. Here, we report that the colibactin biosynthetic enzyme ClbL is an amide bond-forming enzyme that links aminoketone and β-keto thioester substrates in vitro and in vivo. The substrate specificity of ClbL strongly supports a role for this enzyme in terminating the colibactin NRPS-PKS assembly line and incorporating two electrophilic cyclopropane warheads into the final natural product scaffold. This proposed transformation was supported by the detection of a colibactin-derived cross-linked DNA adduct. Overall, this work provides a biosynthetic explanation for colibactin's DNA cross-linking activity and paves the way for further study of its chemical structure and biological roles.


Related Papers

No related papers found

Powered by citation graph analysis