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Synthesis and biochemical characterization of naphthoquinone derivatives targeting bacterial histidine kinases.

Teruhiko IshikawaYoko EguchiMasayuki IgarashiToshihide OkajimaKohei MitaYuri YamasakiKaho SumikuraTaisei OkumuraYuna TabuchiChigusa HayashiMartina PasquaMarco ColucciaGianni ProssedaBianca ColonnaChie KohayakawaAkiyoshi TaniJun-Ichi HarutaRyutaro Utsumi
Published in: The Journal of antibiotics (2024)
Waldiomycin is an inhibitor of histidine kinases (HKs). Although most HK inhibitors target the ATP-binding region, waldiomycin binds to the intracellular dimerization domain (DHp domain) with its naphthoquinone moiety presumed to interact with the conserved H-box region. To further develop inhibitors targeting the H-box, various 2-aminonaphthoquinones with cyclic, aliphatic, or aromatic amino groups and naphtho [2,3-d] isoxazole-4,9-diones were synthesized. These compounds were tested for their inhibitory activity (IC 50 ) against WalK, an essential HK for Bacillus subtilis growth, and their minimum inhibitory concentrations (MIC) against B. subtilis. As a result, 11 novel HK inhibitors were obtained as naphthoquinone derivatives (IC 50 : 12.6-305 µM, MIC: 0.5-128 µg ml -1 ). The effect of representative compounds on the expression of WalK/WalR regulated genes in B. subtilis was investigated. Four naphthoquinone derivatives induced the expression of iseA (formerly yoeB), whose expression is negatively regulated by the WalK/WalR system. This suggests that these compounds inhibit WalK in B. subtilis cells, resulting in antibacterial activity. Affinity selection/mass spectrometry analysis was performed to identify whether these naphthoquinone derivatives interact with WalK in a manner similar to waldiomycin. Three compounds were found to competitively inhibit the binding of waldiomycin to WalK, suggesting that they bind to the H-box region conserved in HKs and inhibit HK activity.
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