Chunkao Siriporn, Youravong Wirote, Yupanqui Chutha T, Alashi Adeola M, Aluko Rotimi E
Department of Food Technology, Faculty of Agro-Industry, Prince of Songkla University, Hat Yai, Songkhla 90110, Thailand.
Membrane Science and Technology Research Center, Prince of Songkla University, Hat Yai, Songkhla 90110, Thailand.
Foods. 2020 Oct 3;9(10):1406. doi: 10.3390/foods9101406.
An iron-binding mung bean protein hydrolysate (MBPH) was prepared using a continuous enzymatic membrane reactor followed by peptide separation on anion-exchange (AEC) and reverse-phase HPLC (RP-HPLC) columns. Amino acid sequences of peptides present in the RP-HPLC fraction with the strongest iron-binding capacity were identified using mass spectrometry, and ten peptides of 5-8 amino acids synthesized for antioxidant characterization. Five fractions (AF1- AF5) with higher iron-binding capacity (88.86 ± 6.43 to 153.59 ± 2.18 mg/g peptide) when compared to the MBPH (36.81 ± 0.93 mg/g peptide) were obtained from AEC. PAIDL had the significantly ( < 0.05) highest iron-binding capacity, but LLLLG and LLGIL showed the strongest metal chelating activity. However, PAIDL (46.63%) and LLGIL (81.27%) had significantly ( < 0.05) better DPPH radical scavenging activity than the other peptides. PAIDL and LLGIL were also the most effective ( < 0.05) hydroxyl radical neutralizers with an effective concentration that scavenged 50% (EC) values of 0.09 and 0.37 mM, respectively. PAIDL and AIVIL showed the lowest EC values of 0.07 mM each for superoxide radical scavenging activity. We conclude that short chain length in combination with leucine as the -terminal amino acid residue contributed to the strong antioxidant properties of peptides in this study.
使用连续酶膜反应器制备了一种铁结合绿豆蛋白水解物(MBPH),随后通过阴离子交换(AEC)和反相高效液相色谱(RP-HPLC)柱进行肽分离。使用质谱法鉴定了RP-HPLC馏分中具有最强铁结合能力的肽的氨基酸序列,并合成了10个5-8个氨基酸的肽用于抗氧化特性分析。与MBPH(36.81±0.93 mg/g肽)相比,从AEC获得了五个具有更高铁结合能力(88.86±6.43至153.59±2.18 mg/g肽)的馏分(AF1-AF5)。PAIDL具有显著(<0.05)最高的铁结合能力,但LLLLG和LLGIL表现出最强的金属螯合活性。然而,PAIDL(46.63%)和LLGIL(81.27%)的DPPH自由基清除活性显著(<0.05)优于其他肽。PAIDL和LLGIL也是最有效的(<0.05)羟基自由基中和剂,有效浓度分别为0.09和0.37 mM时可清除50%(EC)。PAIDL和AIVIL的超氧自由基清除活性的EC值最低,均为0.07 mM。我们得出结论,在本研究中,短链长度与亮氨酸作为末端氨基酸残基相结合有助于肽具有强大的抗氧化特性。