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人肽转运体1介导的细菌衍生趋化肽上皮转运增强中性粒细胞与上皮细胞的相互作用。

hPepT1-mediated epithelial transport of bacteria-derived chemotactic peptides enhances neutrophil-epithelial interactions.

作者信息

Merlin D, Steel A, Gewirtz A T, Si-Tahar M, Hediger M A, Madara J L

机构信息

Department of Pathology, Emory University School of Medicine, Atlanta, Georgia 30322, USA.

出版信息

J Clin Invest. 1998 Dec 1;102(11):2011-8. doi: 10.1172/JCI4179.

Abstract

Intestinal epithelial cells express hPepT1, an apical transporter responsible for the uptake of a broad array of small peptides. As these could conceivably include n-formyl peptides, we examined whether hPepT1 could transport the model n-formylated peptide fMLP and, if so, whether such cellular uptake of fMLP influenced neutrophil-epithelial interactions. fMLP uptake into oocytes was enhanced by hPepT1 expression. In addition, fMLP competitively inhibited uptake of a known hPepT1 substrate (glycylsarcosine) in hPepT1 expressing oocytes. hPepT1 peptide uptake was further examined in a polarized human intestinal epithelial cell line (Caco2-BBE) known to express this transporter. Epithelial monolayers internalized apical fMLP in a fashion that was competitively inhibited by other hPepT1 recognized solutes, but not by related solutes that were not transported by hPepT1. Fluorescence analyses of intracellular pH revealed that fMLP uptake was accompanied by cytosolic acidification, consistent with the known function of hPepT1 as a peptide H+ cotransporter. Lumenal fMLP resulted in directed movement of neutrophils across epithelial monolayers. Solutes that inhibit hPepT1-mediated fMLP transport decreased neutrophil transmigration by approximately 50%. Conversely, conditions that enhanced the rate of hPepT1-mediated fMLP uptake (cytosolic acidification) enhanced neutrophil-transepithelial migration by approximately 70%. We conclude that hPepT1 transports fMLP and uptake of these peptide influences neutrophil-epithelial interactions. These data (a) emphasize the importance of hPepT1 in mediating intestinal inflammation, (b) raise the possibility that modulating hPepT1 activity could influence states of intestinal inflammation, and (c) provide the first evidence of a link between active transepithelial transport and neutrophil-epithelial interactions.

摘要

肠上皮细胞表达hPepT1,这是一种负责摄取多种小肽的顶端转运体。由于这些小肽可以想象地包括N-甲酰化肽,我们研究了hPepT1是否能转运模型N-甲酰化肽fMLP,如果可以,那么fMLP的这种细胞摄取是否会影响中性粒细胞与上皮细胞的相互作用。hPepT1的表达增强了fMLP向卵母细胞的摄取。此外,fMLP竞争性抑制表达hPepT1的卵母细胞中已知hPepT1底物(甘氨酰肌氨酸)的摄取。我们在已知表达这种转运体的极化人肠上皮细胞系(Caco2-BBE)中进一步研究了hPepT1肽的摄取。上皮单层以内化顶端fMLP的方式被其他hPepT1识别的溶质竞争性抑制,但不被hPepT1不转运的相关溶质抑制。细胞内pH的荧光分析显示,fMLP的摄取伴随着胞质酸化,这与hPepT1作为肽H+共转运体的已知功能一致。腔内fMLP导致中性粒细胞跨上皮单层的定向移动。抑制hPepT1介导的fMLP转运的溶质使中性粒细胞跨膜迁移减少约50%。相反,增强hPepT1介导的fMLP摄取速率(胞质酸化)的条件使中性粒细胞跨上皮迁移增强约70%。我们得出结论,hPepT1转运fMLP,这些肽的摄取影响中性粒细胞与上皮细胞的相互作用。这些数据(a)强调了hPepT1在介导肠道炎症中的重要性,(b)增加了调节hPepT1活性可能影响肠道炎症状态的可能性,以及(c)提供了主动跨上皮转运与中性粒细胞-上皮细胞相互作用之间联系的首个证据。

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