Disrupting Gram-Negative Bacterial Outer Membrane Biosynthesis through Inhibition of the Lipopolysaccharide Transporter MsbA

通过抑制脂多糖转运蛋白 MsbA 来破坏革兰氏阴性细菌外膜生物合成

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作者:Mary Kate Alexander, Anh Miu, Angela Oh, Mike Reichelt, Hoangdung Ho, Cecile Chalouni, Sharada Labadie, Lan Wang, Jun Liang, Nicholas N Nickerson, Huiyong Hu, Lan Yu, Miaofen Du, Donghong Yan, Summer Park, Janice Kim, Min Xu, Benjamin D Sellers, Hans E Purkey, Nicholas J Skelton, Michael F T Koehler

Abstract

There is a critical need for new antibacterial strategies to counter the growing problem of antibiotic resistance. In Gram-negative bacteria, the outer membrane (OM) provides a protective barrier against antibiotics and other environmental insults. The outer leaflet of the outer membrane is primarily composed of lipopolysaccharide (LPS). Outer membrane biogenesis presents many potentially compelling drug targets as this pathway is absent in higher eukaryotes. Most proteins involved in LPS biosynthesis and transport are essential; however, few compounds have been identified that inhibit these proteins. The inner membrane ABC transporter MsbA carries out the first essential step in the trafficking of LPS to the outer membrane. We conducted a biochemical screen for inhibitors of MsbA and identified a series of quinoline compounds that kill Escherichia coli through inhibition of its ATPase and transport activity, with no loss of activity against clinical multidrug-resistant strains. Identification of these selective inhibitors indicates that MsbA is a viable target for new antibiotics, and the compounds we identified serve as useful tools to further probe the LPS transport pathway in Gram-negative bacteria.

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