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趋化因子受体CCR5的pH非依赖性内吞循环

pH-independent endocytic cycling of the chemokine receptor CCR5.

作者信息

Signoret Nathalie, Christophe Thierry, Oppermann Martin, Marsh Mark

机构信息

Cell Biology Unit, Medical Research Council Laboratory for Molecular Cell Biology, University College London, Gower Street, London WC1E 6BT, UK.

出版信息

Traffic. 2004 Jul;5(7):529-43. doi: 10.1111/j.1600-0854.2004.00200.x.

Abstract

Following agonist activation, the chemokine receptor CCR5 is internalised through clathrin-coated pits and delivered to recycling endosomes. Subsequently, ligand- free and resensitised receptors are recycled to the cell surface. Currently little is known of the mechanisms regulating resensitisation and recycling of this G-protein coupled receptor. Here we show that raising the pH of endocytic compartments, using bafilomycin A, monensin or NH(4)Cl, does not significantly affect CCR5 endocytosis, recycling or dephosphorylation. By contrast, these reagents inhibited recycling of another well-characterised G protein coupled receptor, the beta(2)-adrenergic receptor, following agonist-induced internalisation. CCR5-bound RANTES (CCL5) and MIP-1beta (CCL4) only exhibit pH-dependent dissociation at pH < 4.0, below the values normally found in endocytic organelles. Although receptor-agonist dissociation is not dependent on low pH, the subsequent degradation of released chemokine is inhibited in the presence of reagents that raise endosomal pH. Our data show that exposure to low pH is not required for RANTES or MIP-1beta dissociation from CCR5, or for recycling of internalised CCR5 to the cell surface.

摘要

激动剂激活后,趋化因子受体CCR5通过网格蛋白包被的小窝内化,并被转运至再循环内体。随后,无配体且重新敏化的受体被再循环至细胞表面。目前对于调节这种G蛋白偶联受体再敏化和再循环的机制知之甚少。在此我们发现,使用巴弗洛霉素A、莫能菌素或氯化铵提高内吞区室的pH值,对CCR5的内吞、再循环或去磷酸化没有显著影响。相比之下,这些试剂在激动剂诱导内化后,抑制了另一种特征明确的G蛋白偶联受体β₂肾上腺素能受体的再循环。与CCR5结合的RANTES(CCL5)和MIP-1β(CCL4)仅在pH < 4.0时呈现pH依赖性解离,该pH值低于内吞细胞器中的正常pH值。虽然受体 - 激动剂解离不依赖于低pH值,但在内体pH值升高的试剂存在下,释放的趋化因子的后续降解受到抑制。我们的数据表明,RANTES或MIP-1β从CCR5解离,以及内化的CCR5再循环至细胞表面,均不需要暴露于低pH值环境。

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