Department of Chemistry, Syracuse University 1-014 Center of Science and Technology, Syracuse, NY 13244, USA.
Department of Chemistry, Syracuse University 1-014 Center of Science and Technology, Syracuse, NY 13244, USA.
Colloids Surf B Biointerfaces. 2022 Jul;215:112478. doi: 10.1016/j.colsurfb.2022.112478. Epub 2022 Mar 24.
Glycolipid, ganglio-N-tetraosylceramide (asialo-GM1), on the mammalian cells are known to be recognized by type IV pili of Pseudomonas aeruginosa. In this work, we show that asialo-GM1 can also be recognized by Lectin A (LecA), another adhesin protein of the P. aeruginosa, by a fluorescent polarization assay, a label-free bacterial motility enabled binding assay, and bacterial mutant studies. On hydrated semi-solid gel surfaces, asialo-GM1 enables swarming and twitching motilities, while on solid surfaces facilitates the bacterial adherence of P. aeruginosa. These results indicate that asialo-GM1 can modulate bioactivities, adherence, and motilities, that are controlled by opposite signaling pathways. We demonstrate that when a solution of pilin monomers or LecA proteins are spread on hydrated gel surfaces, the asialo-GM1 mediated swarming motility is inhibited. Treatment of artificial liposomes containing asialo-GM1 as a component of lipid bilayer with pilin monomers or LecA proteins caused transient leakage of encapsulated dye from liposomes. These results suggest that pili and LecA proteins not only bind to asialo-GM1 but can also cause asialo-GM1 mediated leakage. We also show that both pili and LecA mutants of P. aeruginosa adhere to asialo-GM1 coated solid surfaces, and that a class of synthetic ligands for pili and LecA inhibits both pili and LecA-mediated adherence of P. aeruginosa on asialo-GM1-coated surfaces.
糖脂,神经节四己糖神经酰胺(唾液酸-GM1),在哺乳动物细胞上已知被铜绿假单胞菌的 IV 型菌毛识别。在这项工作中,我们通过荧光偏振测定法、无标记细菌运动能力结合测定法和细菌突变体研究表明,唾液酸-GM1 也可以被铜绿假单胞菌的另一种黏附蛋白 Lectin A(LecA)识别。在水合半固体凝胶表面上,唾液酸-GM1 可促进 swarm 和 twitching 运动,而在固体表面上则有利于铜绿假单胞菌的黏附。这些结果表明,唾液酸-GM1 可以调节受相反信号通路控制的生物活性、黏附和运动。我们证明,当溶液中的菌毛单体或 LecA 蛋白铺展在水合凝胶表面上时,唾液酸-GM1 介导的 swarm 运动被抑制。用含有作为脂质双层成分的唾液酸-GM1 的人工脂质体处理 pilin 单体或 LecA 蛋白会导致囊封染料从脂质体中短暂泄漏。这些结果表明,菌毛和 LecA 蛋白不仅与唾液酸-GM1 结合,而且还可以引起唾液酸-GM1 介导的泄漏。我们还表明,铜绿假单胞菌的菌毛和 LecA 突变体都黏附在唾液酸-GM1 包被的固体表面上,并且一类用于菌毛和 LecA 的合成配体抑制了铜绿假单胞菌在唾液酸-GM1 包被表面上的菌毛和 LecA 介导的黏附。