Paulenová Eva, Dobeš Pavel, Melicher Filip, Houser Josef, Faltinek Lukáš, Hyršl Pavel, Wimmerová Michaela
Central European Institute of Technology, Masaryk University, Kamenice 5, Brno 625 00, Czech Republic.
National Centre for Biomolecular Research, Faculty of Science, Masaryk University, Kotlářská 267/2, Brno 611 37, Czech Republic.
Glycobiology. 2025 Jun 2;35(7). doi: 10.1093/glycob/cwaf033.
Photorhabdus laumondii is a well-known bacterium with a complex life cycle involving mutualism with nematodes of the genus Heterorhabditis and pathogenicity towards insect hosts. It provides an excellent model for studying the diverse roles of lectins, saccharide-binding proteins, in both symbiosis and pathogenicity. This study focuses on the seven-bladed β-propeller lectins of P. laumondii (PLLs), examining their biochemical properties (structure and saccharide specificity) and biological functions (gene expression, interactions with the nematode symbiont, and the host immune system response). Structural analyses revealed diverse oligomeric states among PLLs and a unique organisation of binding sites not described outside the PLL lectin family. Lectins exhibited high specificity for fucosylated and O-methylated saccharides with a significant avidity effect for multivalent ligands. Gene expression analysis across bacterial growth phases revealed that PLLs are predominantly expressed during the exponential phase. Interaction studies with the host immune system demonstrated that PLL5 uniquely induced melanisation in Galleria mellonella hemolymph. Furthermore, PLL2, PLL3, and PLL5 interfered with reactive oxygen species production in human blood cells, indicating their potential role in modulating host immune responses. Biofilm formation assays and binding studies with nematode life stages showed no significant involvement of PLLs in nematode colonization. Our findings highlight the primary role of PLLs in Photorhabdus pathogenicity rather than in symbiosis and offer valuable insight into the fascinating dynamics within the Photorhabdus-nematode-insect triparted system.
劳氏光杆状菌是一种著名的细菌,具有复杂的生命周期,涉及与异小杆线虫属线虫的共生关系以及对昆虫宿主的致病性。它为研究凝集素(糖结合蛋白)在共生和致病性中的多种作用提供了一个极佳的模型。本研究聚焦于劳氏光杆状菌的七叶β-螺旋桨凝集素(PLLs),研究它们的生化特性(结构和糖特异性)以及生物学功能(基因表达、与线虫共生体的相互作用以及宿主免疫系统反应)。结构分析揭示了PLLs之间不同的寡聚状态以及在PLL凝集素家族之外未描述过的独特结合位点组织方式。凝集素对岩藻糖基化和O-甲基化糖类表现出高度特异性,对多价配体有显著的亲和力效应。对细菌不同生长阶段的基因表达分析表明,PLLs主要在指数期表达。与宿主免疫系统的相互作用研究表明,PLL5能在大蜡螟血淋巴中独特地诱导黑化。此外,PLL2、PLL3和PLL5干扰人血细胞中活性氧的产生,表明它们在调节宿主免疫反应中具有潜在作用。生物膜形成试验以及与线虫不同生命阶段的结合研究表明,PLLs在线虫定殖过程中没有显著作用。我们的研究结果突出了PLLs在光杆状菌致病性而非共生中的主要作用,并为光杆状菌-线虫-昆虫三方系统内迷人的动态变化提供了有价值的见解。