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巨噬细胞甘露糖受体CD206对碳水化合物结合的结构分析

Structural analysis of carbohydrate binding by the macrophage mannose receptor CD206.

作者信息

Feinberg Hadar, Jégouzo Sabine A F, Lasanajak Yi, Smith David F, Drickamer Kurt, Weis William I, Taylor Maureen E

机构信息

Departments of Structural Biology and Molecular and Cellular Physiology, Stanford University School of Medicine, Stanford, California, USA.

Department of Life Sciences, Imperial College London, London, United Kingdom.

出版信息

J Biol Chem. 2021 Jan-Jun;296:100368. doi: 10.1016/j.jbc.2021.100368. Epub 2021 Feb 2.

Abstract

The human mannose receptor expressed on macrophages and hepatic endothelial cells scavenges released lysosomal enzymes, glycopeptide fragments of collagen, and pathogenic microorganisms and thus reduces damage following tissue injury. The receptor binds mannose, fucose, or N-acetylglucosamine (GlcNAc) residues on these targets. C-type carbohydrate-recognition domain 4 (CRD4) of the receptor contains the site for Ca-dependent interaction with sugars. To investigate the details of CRD4 binding, glycan array screening was used to identify oligosaccharide ligands. The strongest signals were for glycans that contain either Manα1-2Man constituents or fucose in various linkages. The mechanisms of binding to monosaccharides and oligosaccharide substructures present in many of these ligands were examined in multiple crystal structures of CRD4. Binding of mannose residues to CRD4 results primarily from interaction of the equatorial 3- and 4-OH groups with a conserved principal Ca common to almost all sugar-binding C-type CRDs. In the Manα1-2Man complex, supplementary interactions with the reducing mannose residue explain the enhanced affinity for this disaccharide. Bound GlcNAc also interacts with the principal Ca through equatorial 3- and 4-OH groups, whereas fucose residues can bind in several orientations, through either the 2- and 3-OH groups or the 3- and 4-OH groups. Secondary contacts with additional sugars in fucose-containing oligosaccharides, such as the Lewis-a trisaccharide, provide enhanced affinity for these glycans. These results explain many of the biologically important interactions of the mannose receptor with both mammalian glycoproteins and microbes such as yeast and suggest additional classes of ligands that have not been previously identified.

摘要

在巨噬细胞和肝内皮细胞上表达的人类甘露糖受体能够清除释放的溶酶体酶、胶原蛋白的糖肽片段和致病微生物,从而减少组织损伤后的损害。该受体与这些靶标上的甘露糖、岩藻糖或N-乙酰葡糖胺(GlcNAc)残基结合。该受体的C型碳水化合物识别结构域4(CRD4)包含与糖进行钙依赖性相互作用的位点。为了研究CRD4结合的细节,使用聚糖阵列筛选来鉴定寡糖配体。最强的信号是针对含有Manα1-2Man成分或各种连接方式的岩藻糖的聚糖。通过CRD4的多个晶体结构研究了与许多这些配体中存在的单糖和寡糖亚结构的结合机制。甘露糖残基与CRD4的结合主要源于赤道3-和4-羟基与几乎所有糖结合C型CRD共有的保守主要钙的相互作用。在Manα1-2Man复合物中,与还原型甘露糖残基的补充相互作用解释了对这种二糖的亲和力增强。结合的GlcNAc也通过赤道3-和4-羟基与主要钙相互作用,而岩藻糖残基可以通过2-和3-羟基或3-和4-羟基以几种取向结合。与含岩藻糖的寡糖中其他糖的二级接触,如Lewis-a三糖,为这些聚糖提供了增强的亲和力。这些结果解释了甘露糖受体与哺乳动物糖蛋白以及酵母等微生物之间许多生物学上重要的相互作用,并暗示了以前未鉴定的其他类型的配体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89e1/7949135/d309b0bc4c0f/gr1.jpg

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