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Structure-based rationale for differential recognition of lacto- and neolacto- series glycosphingolipids by the N-terminal domain of human galectin-8

机译:基于结构的基本原理,通过人galectin-8的N末端域来识别乳酸和新乳糖系列糖鞘脂

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摘要

Glycosphingolipids are ubiquitous cell surface molecules undertaking fundamental cellular processes. Lacto-N-tetraose (LNT) and lacto-N-neotetraose (LNnT) are the representative core structures for lacto- and neolacto-series glycosphingolipids. These glycolipids are the carriers to the blood group antigen and human natural killer antigens mainly found on blood cells, and are also principal components in human milk, contributing to infant health. The β-galactoside recognising galectins mediate various cellular functions of these glycosphingolipids. We report crystallographic structures of the galectin-8 N-terminal domain (galectin-8N) in complex with LNT and LNnT. We reveal the first example in which the non-reducing end of LNT binds to the primary binding site of a galectin, and provide a structure-based rationale for the significant ten-fold difference in binding affinities of galectin-8N toward LNT compared to LNnT, such a magnitude of difference not being observed for any other galectin. In addition, the LNnT complex showed that the unique Arg59 has ability to adopt a new orientation, and comparison of glycerol- and lactose-bound galectin-8N structures reveals a minimum atomic framework for ligand recognition. Overall, these results enhance our understanding of glycosphingolipids interactions with galectin-8N, and highlight a structure-based rationale for its significantly different affinity for components of biologically relevant glycosphingolipids.
机译:糖鞘脂是进行基本细胞过程的普遍存在的细胞表面分子。乳酸-N-四糖(LNT)和乳酸-N-新四糖(LNnT)是乳酸和新乳酸系列糖鞘脂的代表性核心结构。这些糖脂是主要存在于血细胞上的血型抗原和人类天然杀伤抗原的载体,也是人乳中的主要成分,有助于婴儿健康。识别半乳糖凝集素的β-半乳糖苷介导这些糖鞘脂的各种细胞功能。我们报告与LNT和LNnT复杂的galectin-8 N末端域(galectin-8N)的晶体结构。我们揭示了第一个例子,其中LNT的非还原端结合到半乳糖凝集素的主要结合位点,并提供了基于结构的基本原理,即与LNnT相比,半乳糖凝集素8N对LNT的结合亲和力显着十倍,其他任何半乳凝素均未观察到如此大的差异。此外,LNnT配合物表明独特的Arg59具有采用新方向的能力,甘油和乳糖结合的Galectin-8N结构的比较揭示了配体识别的最小原子框架。总体而言,这些结果增强了我们对鞘糖脂与半乳糖凝集素8N相互作用的理解,并突出了基于结构的原理,表明其对生物学相关糖鞘脂的成分具有显着不同的亲和力。

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