Internalization of N-formyl peptide chemotactic receptor-ligand complex by human neutrophils. The role of the receptor's 2-kDa external domain and carbohydrates.

J Remes, U Petäjä-Repo, H Rajaniemi
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Abstract

We treated human neutrophils with papain to remove the external 2-kDa domain and along with it the two oligosaccharide side chains of the N-formyl peptide chemotactic receptor and investigated what effect their absence has on the ligand-receptor complex internalization. After prelabeling of the cells with 125I-hexapeptide for 5 min at 22 degrees C, about 95% of the bound radioactivity was located on the cell surface. During the first 5-min incubation at 37 degrees C both the control and papain-treated cells internalized 73% of the receptor-ligand complexes suggesting that internalization is very rapid in human neutrophils and that removal of the external domain and the carbohydrates of the receptor does not affect the rate. However, the truncated receptor-ligand complexes were degraded at a faster rate because the radioactivity released into the medium was significantly higher and correspondingly the acid-resistant radioactivity significantly lower in the papain-treated neutrophils than in control cells already at 5 min and all subsequent time points. The radioactivity accumulated in the medium of the control and papain-treated neutrophils represented inactivated 125I-hexapeptide as less than 5% of it at 5, 30 and 120 min were capable of rebinding. No receptor recycling was detected in either cells. These results indicate that removal of the 2-kDa external domain and the carbohydrates of the N-formyl chemotactic receptors has little effect on the internalization rate of the receptor-ligand complexes but accelerates markedly their intracellular degradation.

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中性粒细胞内化n -甲酰基肽趋化受体-配体复合物。受体的2-kDa外部结构域和碳水化合物的作用。
我们用木瓜蛋白酶处理人中性粒细胞,去除n -甲酰基肽趋化受体的外2-kDa结构域和两个寡糖侧链,并研究它们的缺失对配体-受体复合物内化的影响。用125i -六肽在22℃下预标记细胞5分钟后,约95%的结合放射性位于细胞表面。在37℃的前5分钟孵育期间,对照细胞和木瓜蛋白酶处理的细胞都内化了73%的受体配体复合物,这表明内化在人中性粒细胞中非常迅速,并且去除受体的外部结构域和碳水化合物不影响内化率。然而,截断的受体-配体复合物降解速度更快,因为在5分钟和随后的所有时间点,木瓜蛋白酶处理的中性粒细胞释放到培养基中的放射性明显更高,相应地,抗酸放射性明显低于对照细胞。在对照和木瓜蛋白酶处理的中性粒细胞培养基中积累的放射性表明,在5、30和120 min时,125i -六肽的失活率低于5%,能够重新结合。两种细胞均未检测到受体再循环。这些结果表明,去除n -甲酰基趋化受体的2-kDa外结构域和碳水化合物对受体-配体复合物的内化率影响不大,但会显著加速其细胞内降解。
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