Université de Lorraine, LIBio, 54000, Nancy, France.
Université de Lorraine, PASM, 54000, Nancy, France.
Anal Bioanal Chem. 2021 Jan;413(2):315-329. doi: 10.1007/s00216-020-03037-1. Epub 2021 Jan 2.
Production of iron-chelating peptides from protein hydrolysates requires robust and adequate screening methods to optimize their purification and subsequently valorize their potential antioxidant properties. An original methodology was developed for direct and sensitive screening of iron(II)-chelating peptides based on ion-pair reverse phase liquid chromatography (IP-RPLC) coupled to high-resolution mass spectrometry (HRMS). Peptide mixture was first added to iron(II) solution to form iron(II)-peptide complexes. Then IP-RPLC-HRMS analysis was conducted on this iron-peptide mixture and on the iron-free peptide solution for comparative mass spectra analysis. This protocol, initially applied to a range of low molecular weight standard peptides, allowed detection of [(Peptide-H)+Fe] complex ion for iron(II)-chelating peptides (GGH, EAH, DAH, βAH, DMH, DTH, DSH). GGH was added in complex peptide mixtures and targeted analysis of [(GGH-H)+Fe] complex showed a limit of detection (LOD) below 0.77 mg L of GGH. This protocol was finally tested in combination with metabolomics software and additional digital processing for non-targeted search for iron(II)-chelating peptides. Applicability of this new screening methodology has been validated by detection of GGH as iron(II)-chelating peptide when added at 0.77 mg L in casein hydrolysate. Graphical abstract.
从蛋白质水解物中生产铁螯合肽需要强大且充分的筛选方法,以优化其纯化并进一步发挥其潜在的抗氧化特性。本文开发了一种基于离子对反相液相色谱(IP-RPLC)与高分辨率质谱(HRMS)联用的直接、灵敏的铁(II)螯合肽筛选的原始方法。首先将肽混合物添加到铁(II)溶液中以形成铁(II)-肽复合物。然后对该铁-肽混合物和无铁肽溶液进行 IP-RPLC-HRMS 分析,进行比较质谱分析。该方案最初应用于一系列低分子量标准肽,可检测到铁(II)-螯合肽(GGH、EAH、DAH、βAH、DMH、DTH、DSH)的[(Peptide-H)+Fe]配合物离子。在复杂的肽混合物中添加了 GGH,并对[(GGH-H)+Fe]配合物进行靶向分析,其检测限(LOD)低于 0.77 mg/L 的 GGH。最后,该方案与代谢组学软件和其他数字处理相结合,用于非靶向搜索铁(II)螯合肽。在酪蛋白水解物中添加 0.77 mg/L 的 GGH 时,该新筛选方法的适用性通过检测到 GGH 作为铁(II)螯合肽得到了验证。