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CCR5 酪氨酸磺酸化异质性产生具有不同配体结合特性的细胞表面受体亚群。

CCR5 tyrosine sulfation heterogeneity generates cell surface receptor subpopulations with different ligand binding properties.

机构信息

Department of Pathology and Immunology, Faculty of Medicine, University of Geneva, Switzerland.

Department of Pathology and Immunology, Faculty of Medicine, University of Geneva, Switzerland; Orion Biotechnology, Avenue de Sécheron 15, 1202 Genève, Switzerland.

出版信息

Biochim Biophys Acta Gen Subj. 2021 Jan;1865(1):129753. doi: 10.1016/j.bbagen.2020.129753. Epub 2020 Sep 28.

Abstract

BACKGROUND

Chemokine receptor tyrosine sulfation plays a key role in the binding of chemokines. It has been suggested that receptor sulfation is heterogeneous, but no experimental evidence has been provided so far. The potent anti-HIV chemokine analog 5P12-RANTES has been proposed to owe its inhibitory activity to a capacity to bind a larger pool of cell surface CCR5 receptors than native chemokines such as CCL5, but the molecular details underlying this phenomenon have not been elucidated.

METHODS

We investigated the CCR5 sulfation heterogeneity and the sensitivity of CCR5 ligands to receptor sulfation by performing ELISA assays on synthetic N-terminal sulfopeptides and by performing binding assays on CCR5-expressing cells under conditions that modulate CCR5 sulfation levels.

RESULTS

Two commonly used anti-CCR5 monoclonal antibodies with epitopes in the sulfated N-terminal domain of CCR5 show contrasting binding profiles on CCR5 sulfopeptides, incomplete competition with each other for cell surface CCR5, and opposing sensitivities to cellular treatments that affect CCR5 sulfation levels. 5P12-RANTES is less sensitive than native CCL5 to conditions that affect cellular CCR5 sulfation.

CONCLUSIONS

CCR5 sulfation is heterogeneous and this affects the binding properties of both native chemokines and antibodies. Enhanced capacity to bind to CCR5 is a component of the inhibitory mechanism of 5P12-RANTES.

GENERAL SIGNIFICANCE

We provide the first experimental evidence for sulfation heterogeneity of chemokine receptors and its impact on ligand binding, a phenomenon that is important both for the understanding of chemokine cell biology and for the development of drugs that target chemokine receptors.

摘要

背景

趋化因子受体酪氨酸硫酸化在趋化因子结合中起着关键作用。有人提出受体硫酸化是异质的,但到目前为止还没有提供实验证据。强效抗 HIV 趋化因子类似物 5P12-RANTES 被认为具有抑制活性,原因是它能够结合比天然趋化因子(如 CCL5)更大的细胞表面 CCR5 受体池,但这种现象的分子细节尚未阐明。

方法

我们通过在合成的 N 端硫酸肽上进行 ELISA 测定,以及在调节 CCR5 硫酸化水平的条件下在表达 CCR5 的细胞上进行结合测定,研究了 CCR5 硫酸化异质性和 CCR5 配体对受体硫酸化的敏感性。

结果

两种常用的抗 CCR5 单克隆抗体的表位位于 CCR5 的硫酸化 N 端结构域,它们在 CCR5 硫酸肽上显示出对比的结合谱,彼此之间不完全竞争细胞表面 CCR5,并且对影响 CCR5 硫酸化水平的细胞处理具有相反的敏感性。5P12-RANTES 对影响细胞 CCR5 硫酸化的条件比对天然 CCL5 更不敏感。

结论

CCR5 硫酸化是异质的,这影响了天然趋化因子和抗体的结合特性。增强与 CCR5 结合的能力是 5P12-RANTES 抑制机制的一个组成部分。

一般意义

我们为趋化因子受体硫酸化的异质性及其对配体结合的影响提供了第一个实验证据,这一现象对于理解趋化因子细胞生物学以及开发靶向趋化因子受体的药物都非常重要。

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