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Enhanced Antiviral Activity of Soybean β-Conglycinin-Derived Peptides by Acylation with Saturated Fatty Acids

机译:通过饱和脂肪酸酰化提高大豆β-伴大豆球蛋白衍生肽的抗病毒活性

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Peptide mixtures prepared from soybean β-conglycinin (7S-peptides) were acylated with saturated fatty acids of different chain length (6C-18C) in order to improve their antiviral activity against Feline calicivirus (FCV) strain F9 which is a typical norovirus surrogate. Among the fatty acids varieties, it was revealed that 7S-peptides acylated with myristic and palmitic acids potently inhibited FCV replication. Myristorylation and palmitoylation of 7S-peptides kept host cells viability at 91.51% and 98.90%, respectively. The infectivity of FCV on Crandell-Reese feline kidney cells was further determined after exposure of initial titer of 10~(6.47) TCIDso/mL. Myristoylated and palmitoylated 7S-peptides significantly (P < 0.006) reduced FCV infectivity as compared to native 7S-peptides. Native 7S-peptides showed 25% FCV inhibitory activity while myristoylated and palmitoylated 7S-peptides exhibited 98.59% and 99.98% reduction in FCV infectivity, respectively. Myristoylated and palmitoylated 7S-peptides demonstrated higher anti-FCV activity in a wide range of concentration with complete reduction at 25 μg/mL. Surface hydrophobicity was significantly (P < 0.05) increased after attachment of long hydrocarbon fatty acids to 7S-peptides as supported by changes in fluorescence intensity. Enzymatic hydrolysis together with acylation will give an insight into surface and physiological functional lipopeptides derived from soy β-conglycinin.
机译:将大豆β-伴大豆球蛋白(7S-肽)制备的肽混合物用不同链长的饱和脂肪酸(6C-18C)酰化,以改善其对猫杯状病毒(FCV)品系F9(典型的诺如病毒替代品)的抗病毒活性。在脂肪酸品种中,发现用肉豆蔻酸和棕榈酸酰化的7S肽有效抑制FCV复制。 7S肽的肉豆蔻酰化和棕榈酰化使宿主细胞的活力分别保持在91.51%和98.90%。初始滴度为10〜(6.47)TCIDso / mL时,进一步确定FCV对Crandell-Reese猫肾细胞的感染性。与天然7S肽相比,豆蔻酰化和棕榈酰化7S肽可显着降低(P <0.006)FCV感染性。天然7S肽显示出25%的FCV抑制活性,而肉豆蔻基化和棕榈酰化的7S肽分别显示出98.59%和99.98%的FCV感染性降低。肉豆蔻酰化和棕榈酰化的7S肽在宽浓度范围内表现出更高的抗FCV活性,并在25μg/ mL时完全还原。将长烃脂肪酸连接到7S肽上后,由于荧光强度的变化,表面疏水性显着提高(P <0.05)。酶促水解和酰化作用将使您深入了解大豆β-伴大豆球蛋白的表面和生理功能脂肽。

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