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与唾液酸化和硫酸化Lewis(x)寡糖复合的甘露糖结合蛋白的选择素样突变体的结构

Structure of a selectin-like mutant of mannose-binding protein complexed with sialylated and sulfated Lewis(x) oligosaccharides.

作者信息

Ng K K, Weis W I

机构信息

Department of Structural Biology, Stanford University School of Medicine, California 94305, USA.

出版信息

Biochemistry. 1997 Feb 4;36(5):979-88. doi: 10.1021/bi962564e.

Abstract

Rat serum mannose-binding protein in which residues 211-213 have been changed to the Lys-Lys-Lys sequence found in E-selectin binds HL-60 cells and the oligosaccharide 3'-NeuAc-Le(x). To understand how this mutant, designated K3, mimics the carbohydrate-binding properties of E-selectin, structures of K3 alone and in complexes with 3'-NeuAc-Le(x), 3'-sulfo-Le(x) and 4'-sulfo-Le(x) have been determined at 1.95-2.1 A resolution by X-ray crystallography. The region of K3 that interacts with bound oligosaccharides superimposes closely with the corresponding region of unliganded E-selectin. In each of the oligosaccharide-protein complexes, the 2- and 3-OH of Fuc coordinate Ca2+ and form a network of cooperative hydrogen bonds with amino acid side chains that also coordinate the Ca2+. Lys211 of the K3 mutant, which corresponds to Lys111 of E-selectin, interacts with each of the three bound ligands: the N zeta atom donates a hydrogen bond to the 4-OH of Gal in 3'-NeuAc-Le(x), forms a water-mediated hydrogen bond with the 4-OH of Gal in 3'-sulfo-Le(x), and forms a salt bridge with the sulfate group of 4'-sulfo-Le(x). Lys213 packs against an otherwise exposed aromatic residue and forms a water-mediated hydrogen bond with Lys211 which may help to position that residue for interactions with bound oligosaccharides. These structures are consistent with previous mutagenesis and chemical modification studies which demonstrate the importance of the Ca2+ ligands as well as Lys111 and Lys113 for carbohydrate binding in the selectins, and they provide a structural basis for understanding the selective recognition of negatively charged Le(x) derivatives by the selectins.

摘要

大鼠血清甘露糖结合蛋白中211 - 213位残基已被改变为E - 选择素中的赖氨酸 - 赖氨酸 - 赖氨酸序列,该蛋白可结合HL - 60细胞和寡糖3'-唾液酸 - Le(x)。为了解这种命名为K3的突变体如何模拟E - 选择素的碳水化合物结合特性,通过X射线晶体学在1.95 - 2.1 Å分辨率下测定了单独的K3以及与3'-唾液酸 - Le(x)、3'-硫酸化 - Le(x)和4'-硫酸化 - Le(x)形成复合物的结构。K3中与结合的寡糖相互作用的区域与未结合配体的E - 选择素的相应区域紧密重叠。在每个寡糖 - 蛋白质复合物中,岩藻糖的2 - 和3 - 羟基配位Ca2+,并与也配位Ca2+的氨基酸侧链形成协同氢键网络。K3突变体的赖氨酸211对应于E - 选择素的赖氨酸111,与三种结合的配体中的每一种相互作用:Nζ原子向3'-唾液酸 - Le(x)中半乳糖的4 - 羟基提供氢键,与3'-硫酸化 - Le(x)中半乳糖的4 - 羟基形成水介导的氢键,并与4'-硫酸化 - Le(x)的硫酸基团形成盐桥。赖氨酸213靠在一个原本暴露的芳香族残基上,并与赖氨酸211形成水介导的氢键,这可能有助于该残基定位以与结合的寡糖相互作用。这些结构与先前的诱变和化学修饰研究一致,这些研究证明了Ca2+配体以及赖氨酸111和赖氨酸113对选择素中碳水化合物结合的重要性,并且它们为理解选择素对带负电荷的Le(x)衍生物的选择性识别提供了结构基础。

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