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趋化因子-糖胺聚糖结合:利用傅里叶变换离子回旋共振质谱法研究CCR2配体与高度硫酸化寡糖结合的特异性

Chemokine-glycosaminoglycan binding: specificity for CCR2 ligand binding to highly sulfated oligosaccharides using FTICR mass spectrometry.

作者信息

Yu Yonghao, Sweeney Matthew D, Saad Ola M, Crown Susan E, Hsu Andro R, Handel Tracy M, Leary Julie A

机构信息

Genome Center, Department of Chemistry, University of California, Davis, 95616, USA.

出版信息

J Biol Chem. 2005 Sep 16;280(37):32200-8. doi: 10.1074/jbc.M505738200. Epub 2005 Jul 20.

Abstract

Glycosaminoglycans (GAGs) have recently been demonstrated to be required for the in vivo activity of several chemokines. Minimally, the interaction is thought to provide a mechanism for retention at the site of secretion and the formation of chemokine gradients that provide directional cues for receptor bearing cells, particularly in the presence of shear forces. Thus, a key issue will be to determine the sequence and structure of the GAGs that bind to specific chemokines. Herein, we describe a mass spectrometry assay that was developed to detect protein-oligosaccharide noncovalent complexes, in this case chemokine-GAG interactions, and to select for high affinity GAGs. The process is facilitated by the ability of electrospray ionization to transfer the intact noncovalent complexes from solution into the gas phase. The elemental composition as well as the binding stoichiometry can be calculated from the mass of the complex. Ligands of the chemokine receptor, CCR2 (MCP-1/CCL2, MCP-2/CCL8, MCP-3/CCL7, MCP-4/CCL13, and Eotaxin/CCL11), and the CCR10 ligand CTACK/CCL27 were screened against a small, highly sulfated, heparin oligosaccharide library with limited structural variation. The results revealed heparin octasaccharides with 11 and 12 sulfates as binders. Oligomerization of some chemokines was observed upon GAG binding, whereas in other instances only the monomeric noncovalent complex was identified. The results indicate that, in contrast to the apparent redundancy in the chemokine system, where several chemokines bind and activate the same receptor, these chemokines could be differentiated into two groups based on the stoichiometry of their complexes with the heparin oligosaccharides.

摘要

最近已证明糖胺聚糖(GAGs)是几种趋化因子体内活性所必需的。至少,这种相互作用被认为提供了一种机制,用于在分泌部位保留趋化因子并形成趋化因子梯度,从而为携带受体的细胞提供方向线索,特别是在存在剪切力的情况下。因此,一个关键问题将是确定与特定趋化因子结合的GAGs的序列和结构。在此,我们描述了一种质谱分析方法,该方法用于检测蛋白质 - 寡糖非共价复合物,在这种情况下是趋化因子 - GAG相互作用,并筛选高亲和力的GAGs。电喷雾电离能够将完整的非共价复合物从溶液转移到气相中,这有助于该过程。复合物的元素组成以及结合化学计量可以根据复合物的质量来计算。针对一个结构变化有限的小型、高度硫酸化的肝素寡糖文库,筛选了趋化因子受体CCR2(MCP - 1/CCL2、MCP - 2/CCL8、MCP - 3/CCL7、MCP - 4/CCL13和嗜酸性粒细胞趋化因子/CCL11)的配体以及CCR10配体CTACK/CCL27。结果显示,具有11个和12个硫酸盐基团的肝素八糖是结合剂。在GAG结合时观察到一些趋化因子发生寡聚化,而在其他情况下仅鉴定出单体非共价复合物。结果表明,与趋化因子系统中明显的冗余情况相反,即几种趋化因子结合并激活相同的受体,这些趋化因子可以根据它们与肝素寡糖复合物的化学计量分为两组。

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