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上皮修复受到一种α(1,6)-岩藻糖结合凝集素的抑制。

Epithelial repair is inhibited by an alpha(1,6)-fucose binding lectin.

作者信息

Adam Elizabeth C, Holgate Stephen T, Lackie Peter M

机构信息

Allergy and Inflammation Research, Division of Infection Inflammation and Repair, Univ. of Southampton, MP12, Biomedical Imaging Unit, Southampton General Hospital, Southampton SO16 6YD, United Kingdom.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2007 Feb;292(2):L462-8. doi: 10.1152/ajplung.00292.2006. Epub 2006 Oct 6.

Abstract

The effective repair of damage to the airway epithelium is essential to maintain the ability to exclude airborne particulates and protect against potential pathogens. Carbohydrates on the cell surface have an important role in cell-cell and cell substrate interactions. Using a model of repair with airway epithelial-derived cells of the 16HBE 14o(-) cell line, we have examined the effect of the Aleuria aurantia lectin (AAL), which binds very selectively to alpha(1,6)-linked fucose residues. Addition of unconjugated or FITC-labeled AAL reduced the rate of epithelial repair to approximately one-third of control values as measured by image analysis while cell viability was maintained. Pulse labeling with AAL-FITC for 30 min followed by incubation in AAL-free medium caused similar inhibition of repair but could be reversed by addition of fucose up to 7 h after AAL removal. By confocal microscopy, AAL binding was found to be on the apical, but not basolateral, surfaces of cells, and internalization of the labeled lectin was seen. Preincubation of the lectin with fucose prevented this effect. Ulex europeaus I lectin, which is also fucose specific, resulted in similar binding to the cells and internalization, but it did not affect the speed of the repair process. We conclude that alpha(1,6)-fucose binding sites play an important role in epithelial repair. Better understanding of this process will provide a deeper insight into the crucial mechanisms of epithelial repair.

摘要

气道上皮损伤的有效修复对于维持排除空气中颗粒物的能力以及抵御潜在病原体至关重要。细胞表面的碳水化合物在细胞间和细胞与基质的相互作用中起重要作用。利用16HBE 14o(-)细胞系的气道上皮衍生细胞进行修复模型研究,我们检测了橙黄网柄菌凝集素(AAL)的作用,该凝集素非常选择性地结合α(1,6)-连接的岩藻糖残基。通过图像分析测量,添加未结合的或异硫氰酸荧光素(FITC)标记的AAL可将上皮修复速率降低至对照值的约三分之一,同时维持细胞活力。用AAL-FITC脉冲标记30分钟,然后在无AAL的培养基中孵育,会导致类似的修复抑制,但在去除AAL后长达7小时添加岩藻糖可逆转这种抑制。通过共聚焦显微镜观察,发现AAL结合在细胞的顶端而非基底外侧表面,并且可见标记凝集素的内化。凝集素与岩藻糖预孵育可防止这种效应。同样对岩藻糖具有特异性的欧洲荆豆凝集素(Ulex europeaus I lectin)与细胞产生类似的结合和内化,但不影响修复过程的速度。我们得出结论,α(1,6)-岩藻糖结合位点在上皮修复中起重要作用。对这一过程的更好理解将为深入了解上皮修复的关键机制提供更深刻的见解。

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