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CC趋化因子MCP-1的糖胺聚糖结合位点的鉴定:对体内结构与功能的意义

Identification of the glycosaminoglycan binding site of the CC chemokine, MCP-1: implications for structure and function in vivo.

作者信息

Lau Elaine K, Paavola Chad D, Johnson Zoë, Gaudry Jean-Philippe, Geretti Elena, Borlat Frédéric, Kungl Andreas J, Proudfoot Amanda E, Handel Tracy M

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley, California 94720, USA.

出版信息

J Biol Chem. 2004 May 21;279(21):22294-305. doi: 10.1074/jbc.M311224200. Epub 2004 Mar 18.

Abstract

In a recent study, we demonstrated that glycosaminoglycan (GAG) binding and oligomerization are essential for the in vivo function of the chemokines MCP-1/CCL2, RANTES/CCL5, and MIP-1beta/CCL4 (1). Binding to the GAG chains of cell surface proteoglycans is thought to facilitate the formation of high localized concentrations of chemokines, which in turn provide directional signals for leukocyte migration. To understand the molecular details of the chemokine-GAG interaction, in the present study we identified the GAG binding epitopes of MCP-1/CCL2 by characterizing a panel of surface alanine mutants in a series of heparin-binding assays. Using sedimentation equilibrium and cross-linking methods, we also observed that addition of heparin octasaccharide induces tetramer formation of MCP-1/CCL2. Although MCP-1/CCL2 forms a dimer in solution, both a dimer and tetramer have been observed by x-ray crystallography, providing a glimpse of the putative heparin-bound state. When the GAG binding residues are mapped onto the surface of the tetramer, the pattern that emerges is a continuous ring of basic residues encircling the tetramer, creating a positively charged surface well suited for binding GAGs. The structure also suggests several possible functional roles for GAG-induced oligomerization beyond retention of chemokines at the site of production.

摘要

在最近的一项研究中,我们证明了糖胺聚糖(GAG)结合和寡聚化对于趋化因子MCP-1/CCL2、RANTES/CCL5和MIP-1β/CCL4的体内功能至关重要(1)。与细胞表面蛋白聚糖的GAG链结合被认为有助于形成高局部浓度的趋化因子,进而为白细胞迁移提供定向信号。为了了解趋化因子与GAG相互作用的分子细节,在本研究中,我们通过在一系列肝素结合试验中对一组表面丙氨酸突变体进行表征,确定了MCP-1/CCL2的GAG结合表位。使用沉降平衡和交联方法,我们还观察到添加肝素八糖会诱导MCP-1/CCL2形成四聚体。尽管MCP-1/CCL2在溶液中形成二聚体,但通过X射线晶体学观察到了二聚体和四聚体,这让我们得以一窥假定的肝素结合状态。当将GAG结合残基映射到四聚体表面时,呈现出的模式是围绕四聚体的连续碱性残基环,形成了一个带正电荷的表面,非常适合结合GAG。该结构还暗示了GAG诱导的寡聚化在趋化因子在产生部位保留之外的几种可能功能作用。

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