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Binding specificity of ostreolysin A6 towards Sf9 insect cell lipids

机译:对SF9昆虫细胞脂质朝向SF9昆虫蛋白A6的结合特异性

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Oyster mushrooms (Pleurotus spp.) have recently been shown to produce insecticidal bi-component protein complexes based on the aegerolysin proteins. A role for these proteins is thus indicated for defence and protection of the mushroom, and we propose their use as new environmentally friendly bioinsecticides. These aegerolysin-based protein complexes permeabilise artificial lipid vesicles through aegerolysin binding to an insect-specific sphingolipid, ceramide phosphoethanolamine (CPE), and they are cytotoxic for the Spodoptera frugiferda (Sf9) insect cell line. Tandem mass spectrometry analysis of the Sf9 lipidome uncovered lipids not previously reported in the literature, including in particular C14 sphingosine-based CPE molecular species, which comprised similar to 4 mol% of the whole lipidome. Further analysis of the lipid binding specificity of an aegerolysin from P. ostreatus, ostreolysin A6 (OlyA6), to lipid vesicles composed of commercial lipids, to lipid vesicles composed of the total lipid extract from Sf9 cells, and to HPLC-separated Sf9 cell lipid fractions containing ceramides, confirmed CPE as the main OlyA6 receptor, but also highlighted the importance of membrane cholesterol for formation of strong and stable interactions of OlyA6 with artificial and natural lipid membranes. Binding assays performed with glycan arrays and surface plasmon resonance, which included invertebrate-specific glycans, excluded these saccharides as potential additional OlyA6 receptors.
机译:牡蛎蘑菇(Pleurotus spp。)最近被证明基于Aegerolysin蛋白产生杀虫双组分蛋白质复合物。因此,对这些蛋白质的作用表示用于防御和保护蘑菇,并提出其作为新的环保生物灭菌剂的用途。这些基于Aegerolysin的蛋白质复合物通过Aegeryolysin结合到昆虫特异性鞘脂,神经酰胺磷酸乙醇胺(CPE),它们是Spodoptera Frugiferda(SF9)昆虫细胞系的细胞毒性。 SF9脂质体的串联质谱分析在文献中未报道的SF9脂质体未被覆盖的脂质,包括特别是C14鞘氨醇类的CPE分子物质,其包含与整个脂质体的4mol%相似。进一步分析来自P. Ostreatus,Ostreatusin A6(Olya6),由商业脂质组成的血液囊泡的脂质结合特异性,与商业脂质组成的脂质囊泡,与来自SF9细胞的总脂质提取物组成的脂质囊泡,并与HPLC分离的SF9细胞脂质组成含有神经酰胺的级分,确认CPE作为主要的olya6受体,但也强调了膜胆固醇的重要性,以形成olya6与人工和天然脂质膜的强且稳定的相互作用。用聚糖阵列和表面等离子体共振进行的结合测定包括无脊椎动物特异性聚糖,排除了这些糖类作为潜在的另外的Olya6受体。

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