Synthesis and Structure-Activity Studies of β-Barrel Assembly Machine Complex Inhibitor MRL-494

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Abstract

In the hunt for new antibiotics with activity against Gram-negative pathogens, the outer membrane β-barrel assembly machine (BAM) complex has become an increasingly interesting target. The recently reported BAM complex inhibitor, MRL-494, was discovered via a screening campaign for molecules that target the outer membrane. Notably, MRL-494 was reported to be an unintended byproduct generated during the synthesis of an unrelated compound, and as such no synthesis of the compound was disclosed. We here present a convenient and reliable route for the synthesis of MRL-494 that scales well. The antibacterial activity measured for synthesized MRL-494 matches that reported in the literature. Furthermore, MRL-494 was found to exhibit potent synergistic activity with rifampicin against Gram-negative bacteria, including E. coli, K. pneumoniae, A. baumannii, and P. aeruginosa. MRL-494 was also found to cause outer membrane disruption and induction of the Rcs stress response pathway. In addition, we undertook a focused structure-activity study specifically aimed at elucidating the roles played by the two guanidine moieties contained within the structure of MRL-494.

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Wade, N., Wesseling, C. M. J., Innocenti, P., Slingerland, C. J., Koningstein, G. M., Luirink, J., & Martin, N. I. (2022). Synthesis and Structure-Activity Studies of β-Barrel Assembly Machine Complex Inhibitor MRL-494. ACS Infectious Diseases, 8(11), 2242–2252. https://doi.org/10.1021/acsinfecdis.2c00459

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