Sensitivity to antimicrobial peptide A (SapA) contributes to the survival of Salmonella typhimurium against antimicrobial peptides, neutrophils and virulence in mice

Host-generated antimicrobial peptides (AMPs) play a pivotal role in defense against bacterial pathogens. AMPs kill invading bacteria majorly by disrupting the bacterial cell walls. AMPs are actively synthesized and released into the lumen of the gastrointestinal tract to limit colonization of enteri...

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Veröffentlicht in:Archives of microbiology 2024-07, Vol.206 (7), p.302, Article 302
Hauptverfasser: Nagappan, Sabapathi, Apoorva, Shekhar, Shome, Arijit, Bishnoi, Shikha, Shrivastava, Sameer, Mahawar, Manish
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Sprache:eng
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Zusammenfassung:Host-generated antimicrobial peptides (AMPs) play a pivotal role in defense against bacterial pathogens. AMPs kill invading bacteria majorly by disrupting the bacterial cell walls. AMPs are actively synthesized and released into the lumen of the gastrointestinal tract to limit colonization of enteric pathogens like Salmonella typhimurium ( S. typhimurium ). However, S. typhimurium has evolved several resistance mechanisms to defend AMPs. The multicomponent SapABCDF uptake transporter is one such system that helps in resisting AMPs. In the current study, we analyzed the role of S. typhimurium SapA against stress survival and virulence of this bacterium. ∆sapA mutant strain showed hypersensitivity to AMPs, like melittin and mastoparan. Further, ∆sapA mutant showed more than 22 folds ( p  = 0.019) hypersensitivity to neutrophils as compared to the WT strain of S. typhimurium . In addition, ∆sapA strain showed defective survival in mice. In conclusion, the results of the current study suggest that the SapA is essential for survival against AMPs and virulence of S. typhimurium .
ISSN:0302-8933
1432-072X
1432-072X
DOI:10.1007/s00203-024-04032-1