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Monocyte Migration Driven by Galectin-3 Occurs through Distinct Mechanisms Involving Selective Interactions with the Extracellular Matrix

机译:Galectin-3驱动的单核细胞迁移是通过涉及与细胞外基质选择性相互作用的不同机制发生的。

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摘要

Monocyte migration into tissues, an important event in inflammation, requires an intricate interplay between determinants on cell surfaces and extracellular matrix (ECM). Galectin-3 is able to modulate cell-ECM interactions and is an important mediator of inflammation. In this study, we sought to investigate whether interactions established between galectin-3 and ECM glycoproteins are involved in monocyte migration, given that the mechanisms by which monocytes move across the endothelium and through the extravascular tissue are poorly understood. Using the in vitro transwell system, we demonstrated that monocyte migration was potentiated in the presence of galectin-3 plus laminin or fibronectin, but not vitronectin, and was dependent on the carbohydrate recognition domain of the lectin. Only galectin-3-fibronectin combinations potentiated the migration of monocyte-derived macrophages. In binding assays, galectin-3 did not bind to fibronectin, whereas both the full-length and the truncated forms of the lectin, which retains carbohydrate binding ability, were able to bind to laminin. Our results show that monocytes migrate through distinct mechanisms and selective interactions with the extracellular matrix driven by galectin-3. We suggest that the lectin may bridge monocytes to laminin and may also activate these cells, resulting in the positive regulation of other adhesion molecules and cell adhesion to fibronectin.
机译:单核细胞迁移进入组织是炎症的重要事件,需要细胞表面决定簇与细胞外基质(ECM)之间复杂的相互作用。 Galectin-3能够调节细胞与ECM的相互作用,并且是炎症的重要介质。在这项研究中,我们了解半乳糖凝集素3和ECM糖蛋白之间建立的相互作用是否参与单核细胞迁移,因为对单核细胞穿越内皮并通过血管外组织移动的机制了解甚少。使用体外transwell系统,我们证明了在galectin-3加层粘连蛋白或纤连蛋白(而不是玻连蛋白)存在下,单核细胞迁移被增强,并且依赖于凝集素的碳水化合物识别域。只有galectin-3-纤连蛋白组合可以增强单核细胞衍生的巨噬细胞的迁移。在结合试验中,galectin-3不与纤连蛋白结合,而全长和截短形式的凝集素都保留了碳水化合物的结合能力,能够与层粘连蛋白结合。我们的结果表明,单核细胞通过不同的机制迁移,并与半乳糖凝集素3驱动的细胞外基质发生选择性相互作用。我们建议凝集素可能将单核细胞桥接到层粘连蛋白,也可能激活这些细胞,从而导致其他粘附分子的正向调节以及细胞与纤连蛋白的粘附。

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