肺炎链球菌
微生物学
生物
溶血素
肺炎克雷伯菌
轻度链球菌
肺炎球菌感染
抗生素
链球菌
细菌
基因
大肠杆菌
遗传学
生物化学
作者
Janine Lux,Hannah Portmann,Lucía Sánchez García,Maria Erhardt,Lalaina Holivololona,Laura Laloli,Manon Flore Licheri,Clément Gallay,Robert Hoepner,Nicholas J. Croucher,Daniel Straume,Jan‐Willem Veening,Ronald Dijkman,Manfred Heller,Denis Grandgirard,Stephen L. Leib,Lucy J. Hathaway
标识
DOI:10.1038/s42003-024-06113-9
摘要
Abstract Treatment of pneumococcal infections is limited by antibiotic resistance and exacerbation of disease by bacterial lysis releasing pneumolysin toxin and other inflammatory factors. We identified a previously uncharacterized peptide in the Klebsiella pneumoniae secretome, which enters Streptococcus pneumoniae via its AmiA-AliA/AliB permease. Subsequent downregulation of genes for amino acid biosynthesis and peptide uptake was associated with reduction of pneumococcal growth in defined medium and human cerebrospinal fluid, irregular cell shape, decreased chain length and decreased genetic transformation. The bacteriostatic effect was specific to S. pneumoniae and Streptococcus pseudopneumoniae with no effect on Streptococcus mitis, Haemophilus influenzae, Staphylococcus aureus or K. pneumoniae . Peptide sequence and length were crucial to growth suppression. The peptide reduced pneumococcal adherence to primary human airway epithelial cell cultures and colonization of rat nasopharynx, without toxicity. We identified a peptide with potential as a therapeutic for pneumococcal diseases suppressing growth of multiple clinical isolates, including antibiotic resistant strains, while avoiding bacterial lysis and dysbiosis.
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