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半乳糖凝集素-3 N端缺失突变体和膜锚定合成糖聚合物对眼表糖萼屏障功能的调节作用。

Modulation of ocular surface glycocalyx barrier function by a galectin-3 N-terminal deletion mutant and membrane-anchored synthetic glycopolymers.

作者信息

Mauris Jerome, Mantelli Flavio, Woodward Ashley M, Cao Ziyhi, Bertozzi Carolyn R, Panjwani Noorjahan, Godula Kamil, Argüeso Pablo

机构信息

Schepens Eye Research Institute and Massachusetts Eye and Ear, Department of Ophthalmology, Harvard Medical School, Boston, Massachusetts, United States of America.

出版信息

PLoS One. 2013 Aug 19;8(8):e72304. doi: 10.1371/journal.pone.0072304. eCollection 2013.

Abstract

BACKGROUND

Interaction of transmembrane mucins with the multivalent carbohydrate-binding protein galectin-3 is critical to maintaining the integrity of the ocular surface epithelial glycocalyx. This study aimed to determine whether disruption of galectin-3 multimerization and insertion of synthetic glycopolymers in the plasma membrane could be used to modulate glycocalyx barrier function in corneal epithelial cells.

METHODOLOGY/PRINCIPAL FINDINGS: Abrogation of galectin-3 biosynthesis in multilayered cultures of human corneal epithelial cells using siRNA, and in galectin-3 null mice, resulted in significant loss of corneal barrier function, as indicated by increased permeability to the rose bengal diagnostic dye. Addition of β-lactose, a competitive carbohydrate inhibitor of galectin-3 binding activity, to the cell culture system, transiently disrupted barrier function. In these experiments, treatment with a dominant negative inhibitor of galectin-3 polymerization lacking the N-terminal domain, but not full-length galectin-3, prevented the recovery of barrier function to basal levels. As determined by fluorescence microscopy, both cellobiose- and lactose-containing glycopolymers incorporated into apical membranes of corneal epithelial cells, independently of the chain length distribution of the densely glycosylated, polymeric backbones. Membrane incorporation of cellobiose glycopolymers impaired barrier function in corneal epithelial cells, contrary to their lactose-containing counterparts, which bound to galectin-3 in pull-down assays.

CONCLUSIONS/SIGNIFICANCE: These results indicate that galectin-3 multimerization and surface recognition of lactosyl residues is required to maintain glycocalyx barrier function at the ocular surface. Transient modification of galectin-3 binding could be therapeutically used to enhance the efficiency of topical drug delivery.

摘要

背景

跨膜黏蛋白与多价碳水化合物结合蛋白半乳糖凝集素-3的相互作用对于维持眼表上皮糖萼的完整性至关重要。本研究旨在确定破坏半乳糖凝集素-3的多聚化以及在质膜中插入合成糖聚合物是否可用于调节角膜上皮细胞中的糖萼屏障功能。

方法/主要发现:使用小干扰RNA在人角膜上皮细胞多层培养物中以及在半乳糖凝集素-3基因敲除小鼠中废除半乳糖凝集素-3的生物合成,导致角膜屏障功能显著丧失,这通过孟加拉玫瑰红诊断染料的通透性增加得以表明。向细胞培养系统中添加β-乳糖,一种半乳糖凝集素-3结合活性的竞争性碳水化合物抑制剂,会短暂破坏屏障功能。在这些实验中,用缺乏N端结构域的半乳糖凝集素-3聚合的显性负性抑制剂而非全长半乳糖凝集素-3进行处理,可防止屏障功能恢复至基础水平。通过荧光显微镜测定,含纤维二糖和乳糖的糖聚合物均掺入角膜上皮细胞的顶端膜中,而与密集糖基化的聚合主链的链长分布无关。与含乳糖的对应物相反,纤维二糖糖聚合物的膜掺入损害了角膜上皮细胞的屏障功能,含乳糖的对应物在下拉试验中与半乳糖凝集素-3结合。

结论/意义:这些结果表明,半乳糖凝集素-3的多聚化以及乳糖基残基的表面识别是维持眼表糖萼屏障功能所必需的。半乳糖凝集素-3结合的短暂修饰可用于治疗以提高局部药物递送的效率。

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