唾液酸酯酶处理暴露了HL60细胞上的β -整合素活性配体结合位点,并增加了与纤维连接蛋白的结合。

R K Pretzlaff, V W Xue, M E Rowin
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引用次数: 45

摘要

中性粒细胞从循环到炎症区域的迁移是多个细胞粘附分子连续激活的结果。整合素是细胞表面糖蛋白和一类粘附分子,负责与细胞外基质结合。本研究的目的是确定糖基化,特别是唾液酸的存在,对中性粒细胞模型中β -整合素粘附的贡献。外糖苷酶、唾液酸酶和-半乳糖苷酶对分化的HL60细胞上的β -整合素进行了重塑。β -整合素的活性是通过测量细胞外基质蛋白纤维连接蛋白的粘附来确定的。流式细胞术检测β -整合素、β -整合素和活化β -整合素的表达。唾液酸酶处理对β -整合素的重塑使粘附力增加了1000%以上。流式细胞术分析重塑的β -整合素显示活化的β -整合素表达增加,但总β -和β -整合素表达仅轻微增加。我们假设糖苷酶处理通过暴露通常隐藏的配体结合位点增加了活化β -整合素的粘附和表达。中性粒细胞上β -整合素的糖基化可能隐藏了未受刺激细胞中的配体结合位点,从而有助于中性粒细胞β -整合素功能的亲和调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sialidase treatment exposes the beta1-integrin active ligand binding site on HL60 cells and increases binding to fibronectin.

The migration of neutrophils from the circulation to areas of inflammation is the result of the sequential activation of multiple cellular adhesion molecules. beta1-Integrins are cell surface glycoproteins and the class of adhesion molecules responsible for binding to the extracellular matrix. The goal of this study was to determine the contribution of glycosylation, specifically the presence of sialic acid, to beta1-integrin adhesion in a neutrophil model. beta1-Integrins on differentiated HL60 cells were remodeled by treatment with the exoglycosidases, sialidase and beta-galactosidase. beta1-Integrin activity was determined by measuring adherence to the extracellular matrix protein fibronectin. The expression of beta1-integrins, beta2-integrins and activated beta1-integrins was determined by flow cytometry. Remodeling of beta1-integrins by treatment with sialidase increased adhesion by greater than 1,000%. Flow cytometric analysis of remodeled beta1-integrins demonstrated an increased expression of the activated beta1-integrin, but only minor increases in the expression of total beta1- and beta2-integrins. We postulate that glycosidase treatment increases adhesion and expression of activated beta1-integrins by exposure of the normally hidden ligand-binding site. The glycosylation of beta1-integrins on neutrophils may act to hide the ligand-binding site in unstimulated cells thereby contributing to the affinity modulation observed in neutrophil beta1-integrin function.

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