首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Recognition of sialosaccharide chains of glycophorin on damaged erythrocytes by macrophage scavenger receptors
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Recognition of sialosaccharide chains of glycophorin on damaged erythrocytes by macrophage scavenger receptors

机译:巨噬细胞清除剂受体识别糖蛋白唾液糖链对受损红细胞的识别

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Binding of mouse erythrocytes oxidized in vitro mildly with diamide, periodate or ADP/Fe3+, and the erythrocytes incubated in vitro in a serum-free medium for 12 h (in vitro aged erythrocytes) to mouse peritoneal macrophages was effectively inhibited by isolated glycophorin A, a major sialoglycoprotein of human erythrocyte membrane existing as oligomers in solution, and some of known ligands for macrophage scavenger receptors such as maleyl-BSA, dextran sulfate, fucoidan and polyinosinic acid. Binding of oxidized low density lipoprotein (ox-LDL) to macrophages was inhibited by glycophorin A as well as the known ligands. When the sialyl residues of the saccharide chains of glycophorin A were cleaved by neuraminidase, or the polypeptide of glycophorin A was digested by Pronase, which would destroy its oligomeric forms, the inhibitory effect of glycophorin A was decreased, suggesting that isolated glycophorin A binds to scavenger receptors depending on its sialyl residues and oligomeric structure. Glycopeptides prepared from the N-terminal region of glycophorin A containing most of the sialossacharide chains of the molecule inhibited the binding of ox-LDL although the potency was lower than that of glycophorin A. N-Acetylneuraminic acid at a high concentration also inhibited the ox-LDL binding. Uptake and degradation of 125I-labeled ox-LDL by macrophages was inhibited by glycophorin A, N-acetylneuramin lactose, as well as the known ligands. 125I-labeled glycophorin A bound to macrophages, and the binding was inhibited by the unlabeled glycophorin A and the known ligands. Inhibitory activity of the unlabeled glycophorin A against the labeled glycophorin A-binding was lowered by neuraminidase and Pronase treatment. These results suggest that oxidized and in vitro aged mouse erythrocytes are recognized by scavenger receptors of mouse peritoneal macrophages, and the cell surface components recognized are sialosaccharide chains of glycophorin, possibly glycophorin A counterpart of mouse erythrocytes which clustered or aggregated in the membrane. The finding indicates that the cell surface sialosaccharides can be ligands for scavenger receptors when cells undergo denaturation by oxidative stress or other damaging effects.
机译:分离的糖蛋白A有效抑制了体外用二酰胺,高碘酸盐或ADP / Fe3 +轻度氧化的小鼠红细胞的结合,并且在无血清培养基中体外温育12 h(体外老化的红细胞)与小鼠腹膜巨噬细胞的结合,一种人类红细胞膜的主要唾液糖蛋白,以溶液形式存在于寡聚体中,还有一些已知的巨噬细胞清除剂受体配体,例如马来酰-BSA,硫酸葡聚糖,岩藻依聚糖和聚肌苷酸。氧化的低密度脂蛋白(ox-LDL)与巨噬细胞的结合被糖蛋白A和已知的配体抑制。当神经氨酸酶切割糖蛋白A的糖链的唾液酸残基,或用Pronase消化糖蛋白A的多肽,从而破坏其寡聚形式时,糖蛋白A的抑制作用减弱,表明分离的糖蛋白A结合于清除剂受体取决于其唾液酸残基和寡聚结构。尽管其效力低于糖蛋白A,但从含有大部分分子唾液酸糖链的糖蛋白A N端区域制备的糖肽抑制了ox-LDL的结合。高浓度的N-乙酰神经氨酸也抑制了ox-LDL的结合。 -LDL绑定。糖蛋白A,N-乙酰神经氨酸乳糖以及已知的配体可抑制巨噬细胞摄取和降解125I标记的ox-LDL。 125 I标记的糖蛋白A与巨噬细胞结合,未标记的糖蛋白A和已知配体抑制了结合。神经氨酸酶和链霉蛋白酶处理可降低未标记的糖蛋白A对标记的糖蛋白A结合的抑制活性。这些结果表明,氧化的和体外老化的小鼠红细胞被小鼠腹膜巨噬细胞的清道夫受体识别,并且所识别的细胞表面成分是糖蛋白的唾液糖链,可能是糖蛋白的一种,在膜中成簇或聚集的小鼠红细胞的对应物。该发现表明,当细胞由于氧化应激或其他破坏性作用而变性时,细胞表面唾液糖可能是清道夫受体的配体。

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