4.7 Article

Luteolin increases susceptibility to macrolides by inhibiting MsrA efflux pump in Trueperella pyogenes

Journal

VETERINARY RESEARCH
Volume 53, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s13567-021-01021-w

Keywords

Trueperella pyogenes; luteolin; efflux pump inhibitors; MsrA efflux pump

Funding

  1. National Natural Science Foundation of China [31972736, 31572564]

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This study found that the natural flavonoid luteolin can inhibit the MsrA efflux pump in T. pyogenes isolates, thereby increasing susceptibility to antimicrobial drugs. Luteolin inhibits MsrA activity and ATPase activity, leading to a lack of energy source in T. pyogenes and providing a potential innovative treatment for bacterial infections.
Trueperella pyogenes (T. pyogenes) is an opportunistic pathogen associated with a variety of diseases in many domestic animals. Therapeutic treatment options for T. pyogenes infections are becoming limited due to antimicrobial resistance, in which efflux pumps play an important role. This study aims to evaluate the inhibitory activity of luteolin, a natural flavonoid, on the MsrA efflux pump and investigate its mechanism. The results of antimicrobial susceptibility testing indicated that the susceptibility of msrA-positive T. pyogenes isolates to six macrolides increased after luteolin treatment, while the susceptibility of msrA-negative isolates showed no change after luteolin treatment. It is suspected that luteolin may increase the susceptibility of T. pyogenes isolates by inhibiting MsrA activity. After 1/2 MIC luteolin treatment for 36 h, the transcription level of the msrA gene and the expression level of the MsrA protein decreased by 55.0-97.7% and 36.5-71.5%, respectively. The results of an affinity test showed that the equilibrium dissociation constant (KD) of luteolin and MsrA was 6.462 x 10(-5) M, and hydrogen bonding was predominant in the interaction of luteolin and MsrA. Luteolin may inhibit the ATPase activity of the MsrA protein, resulting in its lack of an energy source. The current study illustrates the effect of luteolin on MsrA in T. pyogenes isolates and provides insight into the development of luteolin as an innovative agent in combating infections caused by antimicrobial-resistant bacteria.

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