Key Laboratory of Health Risk Factors for Seafood of Zhejiang Province, School of Food Science and Pharmacy, Zhejiang Ocean University, Zhoushan 316000, China.
School of Marine Science and Technology, Zhejiang Ocean University, Zhoushan 316000, China.
Mar Drugs. 2019 Jan 10;17(1):47. doi: 10.3390/md17010047.
The Maillard reaction products (MRPs) of half-fin anchovy hydrolysates and glucose, named as HAHp(9.0)-G MRPs, were fractionated by size exclusion chromatography into three major fractions (F1⁻F3). F2, which demonstrated the strongest antibacterial activity against () and showed self-production of hydrogen peroxide (H₂O₂), was extracted by solid phase extraction. The hydrophobic extract of F2 was further isolated by reverse phase-high performance liquid chromatography into sub-fractions HE-F2-1 and HE-F2-2. Nine peptides were identified from HE-F2-1, and two peptides from HE-F2-2 using liquid chromatography-electrospray ionization/multi-stage mass spectrometry. Three peptides, FEDQLR (HGM-Hp1), ALERTF (HGM-Hp2), and RHPEYAVSVLLR (HGM-Hp3), with net charges of -1, 0, and +1, respectively, were synthesized. The minimal inhibitory concentration of these synthetic peptides was 2 mg/mL against . Once incubated with logarithmic growth phase of , HGM-Hp1 and HGM-Hp2 induced significant increases of both extracellular and intracellular H₂O₂ formation. However, HGM-Hp3 only dramatically enhanced intracellular H₂O₂ production in . The increased potassium ions in suspension after addition of HGM-Hp1 or HGM-Hp2 indicated the destruction of cell integrity via irreversible membrane damage. It is the first report of hydrolysates MRPs-derived peptides that might perform the antibacterial activity via inducing intracellular H₂O production.
半鲱鱼水解物与葡萄糖的美拉德反应产物(MRPs),命名为 HAHp(9.0)-G MRPs,通过尺寸排阻色谱法分为三个主要馏分(F1⁻F3)。F2 对 ()具有最强的抗菌活性,并表现出自产过氧化氢(H₂O₂),通过固相萃取提取。F2 的疏水性提取物通过反相高效液相色谱进一步分离成亚馏分 HE-F2-1 和 HE-F2-2。使用液相色谱-电喷雾电离/多级质谱从 HE-F2-1 中鉴定出 9 个肽,从 HE-F2-2 中鉴定出 2 个肽。从 HE-F2-1 中鉴定出 3 个肽,分别为 FEDQLR(HGM-Hp1)、ALERTF(HGM-Hp2)和 RHPEYAVSVLLR(HGM-Hp3),其净电荷分别为-1、0 和+1。这些合成肽的最小抑菌浓度(MIC)均为 2 mg/mL,对 ()有效。一旦与对数生长期的 ()共孵育,HGM-Hp1 和 HGM-Hp2 诱导胞外和胞内 H₂O₂形成显著增加。然而,HGM-Hp3 仅在 ()中显著增强了细胞内 H₂O₂的产生。加入 HGM-Hp1 或 HGM-Hp2 后 ()悬浮液中钾离子的增加表明通过不可逆的膜损伤破坏了细胞完整性。这是水解物 MRPs 衍生肽通过诱导细胞内 H₂O 产生发挥抗菌活性的首次报道。