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首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Recognition roles of the carbohydrate glycotopes of human and bovine lactoferrins in lectin-N-glycan interactions.
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Recognition roles of the carbohydrate glycotopes of human and bovine lactoferrins in lectin-N-glycan interactions.

机译:人和牛乳铁蛋白的碳水化合物糖基在凝集素-N-聚糖相互作用中的识别作用。

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摘要

BACKGROUND: Lactoferrin is an iron-binding protein belonging to the transferrin family. In addition to iron homeostasis, lactoferrin is also thought to have anti-microbial, anti-inflammatory, and anticancer activities. Previous studies showed that all lactoferrins are glycosylated in the human body, but the recognition roles of their carbohydrate glycotopes have not been well addressed. METHODS: The roles of human and bovine lactoferrins involved in lectin-N-glycan recognition processes were analyzed by enzyme-linked lectinosorbent assay with a panel of applied and microbial lectins. RESULTS AND CONCLUSIONS: Both native and asialo human/bovine lactoferrins reacted strongly with four Man-specific lectins - Concanavalia ensiformis agglutinin, Morniga M, Pisum sativum agglutinin, and Lens culinaris lectin. They also reacted well with PA-IIL, a LFuc>Man-specific lectin isolated from Pseudomonas aeruginosa. Both human and bovine lactoferrins also recognized a sialic acid specific lectin-Sambucus nigra agglutinin, but not their asialo products. Both native and asialo bovine lactoferrins, but not the human ones, exhibited strong binding with a GalNAc>Gal-specific lectin-Wisteria floribunda agglutinin. Human native lactoferrins and its asialo products bound well with four Gal>GalNAc-specific type-2 ribosome inactivating protein family lectins-ricin, abrin-a, Ricinus communis agglutinin 1, and Abrus precatorius agglutinin (APA), while the bovine ones reacted only with APA. GENERAL SIGNIFICANCE: This study provides essential knowledge regarding the different roles of bioactive sites of lactoferrins in lectin-N-glycan recognition processes.
机译:背景:乳铁蛋白是一种属于运铁蛋白家族的铁结合蛋白。除铁稳态外,乳铁蛋白还被认为具有抗微生物,抗炎和抗癌的活性。先前的研究表明,所有乳铁蛋白在人体中都被糖基化,但是它们的碳水化合物糖基的识别作用尚未得到很好的解决。方法:通过酶联凝集素吸附测定法和一组应用和微生物凝集素,分析了人和牛乳铁蛋白在凝集素-N-聚糖识别过程中的作用。结果与结论:天然和无唾液酸人/牛乳铁蛋白均与四种人特异性凝集素强烈反应:Concanavalia ensiformis凝集素,Morniga M,Pisum sativum凝集素和Lens culinaris凝集素。他们还与PA-IIL反应良好,PA-IIL是一种从铜绿假单胞菌分离的LFuc>人特异性凝集素。人乳牛铁蛋白和牛乳铁蛋白也都认识到唾液酸特异性凝集素-黑骨接骨木凝集素,但它们的无唾液酸产物却不能。天然和无唾液酸的牛乳铁蛋白均与GalNAc> Gal特异性凝集素-紫藤紫花凝集素结合,而不与人结合。人类天然的乳铁蛋白及其去唾液酸产物与四种Gal> GalNAc特异性2型核糖体失活蛋白家族凝集素-蓖麻毒素,蓖麻蛋白-a,蓖麻毒素凝集素1和粗粒凝集素(APA)结合良好,而牛的仅反应与APA。一般意义:本研究提供有关乳铁蛋白生物活性位点在凝集素-N-聚糖识别过程中的不同作用的基本知识。

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