Laboratory of Food Chemistry, Wageningen University, Bornse Weilanden 9, 6708 WG Wageningen, the Netherlands.
Immunoendocrinology, Division of Medical Biology, Department of Pathology and Medical Biology, University Medical Center Groningen, Hanzeplein 1, 9713 GZ Groningen, the Netherlands.
Carbohydr Polym. 2022 Feb 1;277:118813. doi: 10.1016/j.carbpol.2021.118813. Epub 2021 Oct 28.
Citrus pectins were studied by enzymatic fingerprinting using a simultaneous enzyme treatment with endo-polygalacturonase (endo-PG) from Kluyveromyces fragilis and pectin lyase (PL) from Aspergillus niger to reveal the methyl-ester distribution patterns over the pectin backbone. Using HILIC-MS combined with HPAEC enabled the separation and identification of the diagnostic oligomers released. Structural information on the pectins was provided by using novel descriptive parameters such as degree of blockiness of methyl-esterified oligomers by PG (DB) and degree of blockiness of methyl-esterified oligomers by PL (DB). This approach enabled us to clearly differentiate citrus pectins with various methyl-esterification patterns. The simultaneous use of PG and PL showed additional information, which is not revealed in digests using PG or PL alone. This approach can be valuable to differentiate pectins having the same DM and to get specific structural information on pectins and therefore to be able to better predict their physical and biochemical functionalities.
采用内切聚半乳糖醛酸酶(来自脆弱拟诺卡氏菌)和果胶裂解酶(来自黑曲霉)的同时酶处理,通过酶指纹图谱研究了柑橘果胶,以揭示果胶主链上甲酯分布模式。使用 HILIC-MS 结合 HPAEC 能够分离和鉴定释放的诊断低聚物。通过使用新型描述性参数,如 PG(DB)对甲酯化低聚物的嵌段程度和 PL(DB)对甲酯化低聚物的嵌段程度,提供了果胶的结构信息。该方法能够清楚地区分具有不同甲酯化模式的柑橘果胶。同时使用 PG 和 PL 显示了单独使用 PG 或 PL 消化时不会揭示的附加信息。这种方法可用于区分具有相同 DM 的果胶,并获得果胶的特定结构信息,从而能够更好地预测其物理和生化功能。