Structural basis for the inhibition of RecBCD by Gam and its synergistic antibacterial effect with quinolones

Author:

Wilkinson Martin1,Troman Lucy2,Wan Nur Ismah Wan AK3,Chaban Yuriy1,Avison Matthew B3,Dillingham Mark S2ORCID,Wigley Dale B1ORCID

Affiliation:

1. Department of Medicine, Section of Structural Biology, Imperial College London, London, United Kingdom

2. School of Biochemistry, University of Bristol, Bristol, United Kingdom

3. School of Cellular and Molecular Medicine, University of Bristol, Bristol, United Kingdom

Abstract

Our previous paper (Wilkinson et al, 2016) used high-resolution cryo-electron microscopy to solve the structure of the Escherichia coli RecBCD complex, which acts in both the repair of double-stranded DNA breaks and the degradation of bacteriophage DNA. To counteract the latter activity, bacteriophage λ encodes a small protein inhibitor called Gam that binds to RecBCD and inactivates the complex. Here, we show that Gam inhibits RecBCD by competing at the DNA-binding site. The interaction surface is extensive and involves molecular mimicry of the DNA substrate. We also show that expression of Gam in E. coli or Klebsiella pneumoniae increases sensitivity to fluoroquinolones; antibacterials that kill cells by inhibiting topoisomerases and inducing double-stranded DNA breaks. Furthermore, fluoroquinolone-resistance in K. pneumoniae clinical isolates is reversed by expression of Gam. Together, our data explain the synthetic lethality observed between topoisomerase-induced DNA breaks and the RecBCD gene products, suggesting a new co-antibacterial strategy.

Funder

Wellcome

Medical Research Council

Cancer Research UK

Engineering and Physical Sciences Research Council

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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