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用于选择性富集小阳离子肽的铜螯合壳聚糖微凝胶

Copper-Chelated Chitosan Microgels for the Selective Enrichment of Small Cationic Peptides.

作者信息

Jacquier Jean-Christophe, Duffy Ciara, O'Sullivan Michael, Dillon Eugène

机构信息

UCD Institute of Food and Health, School of Agriculture and Food Science, University College Dublin, D04 V1W8 Dublin, Ireland.

Conway Institute of Biomolecular and Biomedical Research, University College Dublin, D04 V1W8 Dublin, Ireland.

出版信息

Gels. 2024 Apr 24;10(5):289. doi: 10.3390/gels10050289.

Abstract

Copper-chelated chitosan microgels were investigated as an immobilized metal affinity chromatography (IMAC) phase for peptide separation. The copper-crosslinked chitosan beads were shown to strongly interact with a range of amino acids, in a wide range of pH and saline conditions. The beads exhibited an affinity that seemed to depend on the isoelectric point of the amino acid, with the extent of uptake increasing with decreasing isoelectric point. This selective interaction with anionic amino acids resulted in a significant relative enrichment of the supernatant solution in cationic amino acids. The beads were then studied as a novel fractionation system for complex milk hydrolysates. The copper chitosan beads selectively removed larger peptides from the hydrolysate aqueous solution, yielding a solution relatively enriched in medium and smaller peptides, which was characterized both quantitatively and qualitatively by size exclusion chromatography (SEC). Liquid chromatography-mass spectrometry (LCMS) work provided comprehensive data on a peptide sequence level and showed that a depletion of the anionic peptides by the beads resulted in a relative enrichment of the cationic peptides in the supernatant solution. It could be concluded that after fractionation a dramatic relative enrichment in respect to small- and medium-sized cationic peptides in the solution, characteristics that have been linked to bioactivities, such as anti-microbial and cell-penetrating properties. The results demonstrate the use of the chitosan copper gel bead system in lab scale fractionation of complex hydrolysate mixtures, with the potential to enhance milk hydrolysate bioactivity.

摘要

研究了铜螯合壳聚糖微凝胶作为固定化金属亲和色谱(IMAC)相用于肽分离的情况。结果表明,铜交联壳聚糖珠在广泛的pH和盐条件下能与多种氨基酸发生强烈相互作用。这些珠子表现出的亲和力似乎取决于氨基酸的等电点,随着等电点降低,摄取程度增加。与阴离子氨基酸的这种选择性相互作用导致阳离子氨基酸在上清液中显著相对富集。然后将这些珠子作为一种用于复杂牛奶水解产物的新型分级分离系统进行研究。铜壳聚糖珠从水解产物水溶液中选择性地去除较大的肽,得到相对富含中等大小和较小肽的溶液,通过尺寸排阻色谱(SEC)对其进行了定量和定性表征。液相色谱 - 质谱(LCMS)工作在肽序列水平上提供了全面的数据,并表明珠子对阴离子肽的去除导致上清液中阳离子肽相对富集。可以得出结论,分级分离后溶液中中小尺寸阳离子肽显著相对富集,这些特性与生物活性相关,如抗菌和细胞穿透特性。结果证明了壳聚糖铜凝胶珠系统在实验室规模分级分离复杂水解产物混合物中的应用,具有增强牛奶水解产物生物活性的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6a6/11121711/ecf2e0f67a6c/gels-10-00289-g001.jpg

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