Abstract
An underutilized potential antibacterial target is the cell membrane, which supports or associates with approximately half of bacterial proteins and has a phospholipid makeup distinct from mammalian cell membranes. Previously, an experimental small molecule, D66, was shown to subtly damage Gram-negative bacterial cell membranes and to disrupt infection of mammalian cells. Here, we show that D66 increases the fluidity of Gram-positive bacterial cell membranes, dissipates membrane voltage, and inhibits the human pathogen Staphylococcus aureus in several infection-relevant growth states. Thus, compounds that cause membrane damage without lysing cells could be useful for mitigating infections caused by S. aureus .
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CITATION STYLE
Dombach, J. L., Christensen, G. L., Allgood, S. C., Quintana, J. L. J., & Detweiler, C. S. (2024). Inhibition of multiple staphylococcal growth states by a small molecule that disrupts membrane fluidity and voltage. MSphere, 9(3). https://doi.org/10.1128/msphere.00772-23
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