Christensen Brian, Nielsen Nanna R, Sørensen Marie R, Jacobsen Lotte N, Ostenfeld Marie S, Sørensen Esben S
Department of Molecular Biology and Genetics, Aarhus University, DK-8000 Aarhus, Denmark.
Arla Foods Ingredients Group P/S, DK-8260 Viby J, Denmark.
Biomedicines. 2023 Mar 14;11(3):893. doi: 10.3390/biomedicines11030893.
Osteopontin (OPN) is a bioactive integrin-binding protein found in high concentrations in milk, where it is present both as a full-length protein and as several N-terminally derived fragments. OPN resists gastric digestion, and via interaction with receptors in the gut or by crossing the intestinal barrier into circulation, ingested milk OPN may influence physiological processes. The aim of this study was to investigate OPN interaction with intestinal cells and its transport across models of the intestinal barrier. Immunodetection of OPN incubated with Caco-2 cells at 4 °C and 37 °C showed that OPN binds to the intestinal cells, but it is not internalised. Transepithelial transport was studied using mono- and co-cultures of Caco-2 cells and mucus-producing HT29-MTX cells in transwell membranes. OPN was shown to cross the barrier models in a time-, temperature-, and energy-dependent process inhibited by wortmannin, indicating that the transport takes place via the transcytosis pathway. Analyses of the naturally occurring milk mixture of full-length and N-terminal fragments showed that the N-terminal fragments of OPN bound intestinal cells most effectively and that the fragments were transported across the intestinal membrane models. This suggests that proteolytic processing of OPN increases its biological activity after ingestion.
骨桥蛋白(OPN)是一种具有生物活性的整合素结合蛋白,在牛奶中含量很高,以全长蛋白和几种N端衍生片段的形式存在。OPN能抵抗胃消化,通过与肠道中的受体相互作用或穿过肠屏障进入循环系统,摄入的牛奶OPN可能会影响生理过程。本研究的目的是研究OPN与肠道细胞的相互作用及其在肠屏障模型中的转运。在4℃和37℃下将OPN与Caco-2细胞孵育后的免疫检测表明,OPN与肠道细胞结合,但未被内化。使用Caco-2细胞和产生黏液的HT29-MTX细胞在transwell膜中的单培养和共培养来研究跨上皮转运。结果表明,OPN通过一种受渥曼青霉素抑制的时间、温度和能量依赖性过程穿过屏障模型,这表明转运是通过转胞吞途径进行的。对天然存在的全长和N端片段的牛奶混合物分析表明,OPN的N端片段与肠道细胞结合最有效,并且这些片段能够穿过肠膜模型。这表明OPN的蛋白水解加工在摄入后会增加其生物活性。