4.7 Article

Identification of small-molecule inhibitors of the DNA repair proteins RuvAB from Pseudomonas aeruginosa

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BIOORGANIC & MEDICINAL CHEMISTRY
卷 73, 期 -, 页码 -

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.bmc.2022.117022

关键词

Pseudomonas aeruginosa; Holliday junction; Helicase; RuvA; RuvB; Small-molecule inhibitor

资金

  1. National Natural Science Foundation of China [31971222, 22173020]

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The Holliday junction branch migrator RuvAB complex is a crucial factor in homologous recombination and DNA damage repair, and can be targeted for the treatment of bacterial pathogens. This study identified small-molecule inhibitors of PaRuvAB, including corilagin, bardoxolone methyl, and 10-(6 '-plastoquinonyl) decyltriphenylphosphonium, which efficiently inhibited the branch migration activity of PaRuvAB and increased the susceptibility of P. aeruginosa to UV-C irradiation.
The Holliday junction (HJ) branch migrator RuvAB complex plays a fundamental role during homologous recombination and DNA damage repair, and therefore, is an attractive target for the treatment of bacterial pathogens. Pseudomonas aeruginosa (P. aeruginosa, Pa) is one of the most common clinical opportunistic bacterial pathogens, which can cause a series of life-threatening acute or chronic infections. Here, we performed a high throughput small-molecule screening targeting PaRuvAB using the FRET-based HJ branch migration assay. We identified that corilagin, bardoxolone methyl (BM) and 10-(6 '-plastoquinonyl) decyltriphenylphosphonium (SKQ1) could efficiently inhibit the branch migration activity of PaRuvAB, with IC50 values of 0.40 +/- 0.04 mu M, 0.38 +/- 0.05 mu M and 4.64 +/- 0.27 mu M, respectively. Further biochemical and molecular docking analyses demonstrated that corilagin directly bound to PaRuvB at the ATPase domain, and thus prevented ATP hydrolysis. In contrast, BM and SKQ1 acted through blocking the interactions between PaRuvA and HJ DNA. Finally, these compounds were shown to increase the susceptibility of P. aeruginosa to UV-C irradiation. Our work, for the first time, reports the small-molecule inhibitors of RuvA and RuvB from any species, providing valuable chemical tools to dissect the functional role of each individual protein in vivo.

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