Impact of AbaI Mutation on Virulence, Biofilm Development, and Antibiotic Susceptibility in Acinetobacter baumannii
收藏DataCite Commons2025-04-27 更新2025-04-16 收录
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The quorum sensing (QS) system mediated by the abaI gene in Acinetobacter baumannii is crucial for various physiological and pathogenic processes. In this study, we constructed a stable markerless abaI knockout mutant (ΔabaI) strain using a pEXKm5-based allele replacement method to investigate the impact of abaI on A. baumannii. Proteomic analysis revealed significant alterations in protein expression between the wild type (WT) and ΔabaI mutant strains, particularly in proteins associated with membrane structure, antibiotic resistance, and virulence. Notably, the downregulation of key outer membrane proteins such as SurA, OmpA, OmpW, and BamA suggests potential vulnerabilities in outer membrane integrity, which correlate with structural abnormalities in the ΔabaI mutant strain, including irregular cell shapes and compromised membrane integrity, observed by scanning and transmission electron microscopy. Furthermore, diminished expression of regulatory proteins such as OmpR and GacA-GacS highlights the broader regulatory networks affected by abaI deletion. Functional assays revealed impaired biofilm formation and surface-associated motility in the mutant strain, indicative of altered colonization capabilities. Additionally, the ΔabaI mutant exhibited significantly reduced virulence in Galleria mellonella larvae, emphasizing the importance of abaI in A. baumannii pathogenicity. Compared to the wild-type strain, the mutant exhibited greater susceptibility to antibiotics targeting the cell membrane but demonstrated decreased sensitivity to beta-lactam antibiotics, attributable to its production of beta-lactamase enzymes, as found in the proteomic analysis. Our findings underscore the multifaceted role of the abaI gene in modulating various cellular processes and highlight its significance in A. baumannii physiology, pathogenesis, and antibiotic resistance. Targeting the abaI QS system may offer novel therapeutic strategies for this clinically significant pathogen.
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Science Data Bank
创建时间:
2024-05-20



