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Raffinose a plant galactoside inhibits Pseudomonas aeruginosa biofilm formation via binding to LecA and decreasing cellular cyclic diguanylate levels

机译:棉子糖一种植物半乳糖苷通过与LecA结合并降低细胞环二鸟苷水平来抑制铜绿假单胞菌生物膜的形成。

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摘要

Biofilm formation on biotic or abiotic surfaces has unwanted consequences in medical, clinical, and industrial settings. Treatments with antibiotics or biocides are often ineffective in eradicating biofilms. Promising alternatives to conventional agents are biofilm-inhibiting compounds regulating biofilm development without toxicity to growth. Here, we screened a biofilm inhibitor, raffinose, derived from ginger. Raffinose, a galactotrisaccharide, showed efficient biofilm inhibition of Pseudomonas aeruginosa without impairing its growth. Raffinose also affected various phenotypes such as colony morphology, matrix formation, and swarming motility. Binding of raffinose to a carbohydrate-binding protein called LecA was the cause of biofilm inhibition and altered phenotypes. Furthermore, raffinose reduced the concentration of the second messenger, cyclic diguanylate (c-di-GMP), by increased activity of a c-di-GMP specific phosphodiesterase. The ability of raffinose to inhibit P. aeruginosa biofilm formation and its molecular mechanism opens new possibilities for pharmacological and industrial applications.
机译:在生物或非生物表面上形成生物膜会对医学,临床和工业环境产生不良影响。用抗生素或杀生物剂进行的治疗通常在消除生物膜方面无效。常规试剂的有望替代品是抑制生物膜的化合物,可调节生物膜的发育而不会对生长产生毒性。在这里,我们筛选了一种从生姜中提取的生物膜抑制剂棉子糖。棉子糖,一种半乳糖三糖,对铜绿假单胞菌显示出有效的生物膜抑制作用,而不会损害其生长。棉子糖还影响各种表型,例如菌落形态,基质形成和成群运动。棉子糖与称为LecA的碳水化合物结合蛋白的结合是生物膜抑制和表型改变的原因。此外,棉子糖通过增加c-di-GMP特异性磷酸二酯酶的活性,降低了第二个信使环状二胍(c-di-GMP)的浓度。棉子糖抑制铜绿假单胞菌生物膜形成的能力及其分子机制为药理学和工业应用开辟了新的可能性。

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