Characterization of an Antibacterial Agent Targeting Ferrous Iron Transport Protein FeoB against Staphylococcus aureus and Gram-Positive Bacteria

  • Shin, Minhye
  • Jin, Yerin
  • Park, Jinsub
  • Mun, Daye
  • Kim, Soo Rin
  • ... Kim, Kyoung Heon
  • 외 2명
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초록

The emergence of multidrug-resistant Staphylococcus aureus strains has become a serious clinical problem. Iron is absolutely required for the bacterial growth, virulence associated with colonization, and survival from the host immune system. The FeoB protein is a major iron permease in bacterial ferrous iron transport systems (Feo) that has been shown to play a crucial role in virulence of some pathogenic bacteria. However, FeoB is still uncharacterized in Gram-positive pathogens, and its effects on S. aureus pathogenesis are unknown. In this study, we identified a novel inhibitor, GW3965 center dot HCl, that targets FeoB in S. aureus. The molecule effectively inhibited FeoB in vitro enzyme activity, bacterial growth, and virulence factor expression. Genome-editing and metabolomic analyses revealed that GW3965 center dot HCl inhibited FeoB function and affected the associated mechanisms with reduced iron availability in S. aureus. Gentamicin resistance and Caenorhabditis elegans infection assays further demonstrated the power of GW3965 center dot HCl as a safe and efficient antibacterial agent. In addition to S. aureus, GW3965 center dot HCl also presented its effectiveness on inhibition of the FeoB activity and growth of Gram-positive bacteria. This novel inhibitor will provide new insight for developing a next-generation antibacterial therapy.

키워드

X-RECEPTOR AGONISTLXR AGONISTFATTY-ACIDSANTIBIOTICSVIRULENCEMANGANESEIDENTIFICATIONBIOSYNTHESISACQUISITIONMECHANISMS
제목
Characterization of an Antibacterial Agent Targeting Ferrous Iron Transport Protein FeoB against Staphylococcus aureus and Gram-Positive Bacteria
저자
Shin, MinhyeJin, YerinPark, JinsubMun, DayeKim, Soo RinPayne, Shelley M.Kim, Kyoung HeonKim, Younghoon
DOI
10.1021/acschembio.0c00842
발행일
2021-01-15
유형
Article
저널명
ACS Chemical Biology
16
1
페이지
136 ~ 149