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◆ Frontiers in cellular and infection microbiology2026-01-01

LIPI-4 and lmo0180 cooperatively regulate flagellar motility and virulence in Listeria monocytogenes.

Caixia Liu, Cong Liu, Shengjie Gao, Xun Ma, Cheng Jia, Yue Jiang, Ling Song, Lu Liu, Yatao Qi, Zhongke Yin, Rong Shan, Guangdong Hu, David T S Hayman, Jing Wang

一句话结论 · In one sentence

The results showed that deletion of lmo0180 alone had no detectable effects on bacterial motility, flagellar formation, or virulence-related phenotypes. In contrast, LIPI-4 deletion enhanced biofilm formation and eliminated motility and flagellar assembly. Simultaneous deletion of LIPI-4 and lmo0180 restored bacterial motility, flaA gene expression, and partial restoration of flagellar assembly; however, the double mutant displayed significant reductions in adhesion, invasion, intracellular proliferation, and cell-to-cell spread in host cells. In vivo experiments consistently showed that mice infected with the ΔLIPI-4/lmo0180 mutant exhibited reduced bacterial loads and tissue damage. Compared with the ΔLIPI-4 strain that exhibited elevated transcript levels of PrfA-controlled virulence genes, the ΔLIPI-4/lmo0180 mutant exhibited downregulation of most such genes.

原始摘要(英文原文)· Original abstract
INTRODUCTION: Deletion of Listeria pathogenicity island 4 (LIPI-4) in Listeria monocytogenes (L. monocytogenes) impairs motility, disrupts flagellar assembly, and markedly upregulates the lmo0180 gene. METHODS: In this study, the Δlmo0180 single-gene deletion mutant and ΔLIPI-4/lmo0180 double-gene deletion mutant were constructed by homologous recombination. Bacterial motility was assessed, and flagellar biogenesis was observed by transmission electron microscopy. The adhesion, invasion, intracellular proliferation, and cell-to-cell spread capacities were compared across strains. Virulence was evaluated in a mouse model, and transcript levels of major virulence factors were quantified by quantitative real-time PCR. RESULTS: The results showed that deletion of lmo0180 alone had no detectable effects on bacterial motility, flagellar formation, or virulence-related phenotypes. In contrast, LIPI-4 deletion enhanced biofilm formation and eliminated motility and flagellar assembly. Simultaneous deletion of LIPI-4 and lmo0180 restored bacterial motility, flaA gene expression, and partial restoration of flagellar assembly; however, the double mutant displayed significant reductions in adhesion, invasion, intracellular proliferation, and cell-to-cell spread in host cells. In vivo experiments consistently showed that mice infected with the ΔLIPI-4/lmo0180 mutant exhibited reduced bacterial loads and tissue damage. Compared with the ΔLIPI-4 strain that exhibited elevated transcript levels of PrfA-controlled virulence genes, the ΔLIPI-4/lmo0180 mutant exhibited downregulation of most such genes. DISCUSSION: These transcriptional changes may contribute to the attenuated virulence phenotype. Collectively, the study demonstrates that LIPI-4 and lmo0180 interact genetically to influence flagellar motility and virulence in L. monocytogenes, a finding that provides new insights into the pathogenic mechanisms of L. monocytogenes.
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LIPI-4 and lmo0180 cooperatively regulate flagellar motility and virulence in Listeria monocytogenes. — 科研速览 Science Skim