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


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 ?-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.

SUBMITTER: Jiang Y 

PROVIDER: S-EPMC6728428 | biostudies-literature | 2019 Jul

REPOSITORIES: biostudies-literature

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

Jiang Yindi Y   Stornetta Alessia A   Villalta Peter W PW   Wilson Matthew R MR   Boudreau Paul D PD   Zha Li L   Balbo Silvia S   Balskus Emily P EP  

Journal of the American Chemical Society 20190711 29


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 c  ...[more]

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