首页> 外文期刊>The Biochemical Journal >Only the complex N559-glycan in the synaptic vesicle glycoprotein 2C mediates high affinity binding to botulinum neurotoxin serotype A1
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Only the complex N559-glycan in the synaptic vesicle glycoprotein 2C mediates high affinity binding to botulinum neurotoxin serotype A1

机译:突触囊泡糖蛋白2C中只有复合N559聚糖介导与肉毒杆菌神经毒素血清型A1的高亲和力结合

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摘要

The extraordinary potency of botulinum neurotoxins (BoNTs) is mediated by their high neurospecificity, targeting peripheral cholinergic motoneurons leading to flaccid paralysis and successive respiratory failure. Complex polysialo gangliosides accumulate BoNTs on the plasma membrane and facilitate subsequent binding to synaptic vesicle membrane proteins which results in toxin endocytosis. The luminal domain 4 (LD4) of the three synaptic vesicle glycoprotein 2 (SV2) isoforms A-C mediates uptake of theclinically most relevant serotype BoNT/Al. SV2C-LD4 exhibits the strongest protein-protein interaction and comprises five putative N-glycosylation sites (PNG sites). Here, we expressed human SV2C-LD4 fused to human IgG-Fc in prokaryotic and eukaryotic expression systems to analyse the effect of N-glycosylation of SV2C on the interaction with BoNT/Al. Mass spectrometric analysis of gSV2CLD-Fc demonstrates glycosylation of N534, N559 and N565, the latter two residing at the BoNT/A interface. Mutational analysis demonstrates that only the N559-glycan, but not N565-glycanincreases affinity of BoNT/A for human gSV2C-LD4. The N559-glycan was characterised as a complex core-fucosylated type with a heterogeneity ranging up to tetra-antennary structure with bisecting N-acetylglucosamine which can establish extensive interactions with BoNT/A. The mutant gSV2CLD-Fc N559A displayed a 50-fold increased dissociation rate kd resulting in an overall 12-fold decreased binding affinity in surface plasmon resonance (SPR) experiments. The delayed dissociation might provide BoNT/A moretime for endocytosis into synaptic vesicles. In conclusion, we show the importance of the complex N559-glycan of SV2C-LD4, adding a third anchor point beside a ganglioside and the SV2C-LD4 peptide, for BoNT/A neuronal cell surface binding and uptake.
机译:肉毒杆菌神经毒素(BoNT)的非凡效能是由其高神经特异性介导的,其靶向外周胆碱能运动神经元,导致松弛性麻痹和继发性呼吸衰竭。复杂的多唾液酸神经节苷脂在质膜上积累BoNT,并促进随后与突触小泡膜蛋白的结合,从而导致毒素内吞。三种突触小泡糖蛋白2(SV2)亚型A-C的腔结构域4(LD4)介导了临床上最相关的血清型BoNT / A1的摄取。 SV2C-LD4表现出最强的蛋白质-蛋白质相互作用,并且包含五个假定的N-糖基化位点(PNG位点)。在这里,我们在原核和真核表达系统中表达与人IgG-Fc融合的人SV2C-LD4,以分析SV2C的N-糖基化对与BoNT / A1相互作用的影响。 gSV2CLD-Fc的质谱分析表明N534,N559和N565的糖基化,后两个位于BoNT / A界面。突变分析表明,只有N559-聚糖,而不是N565-聚糖会增加BoNT / A对人gSV2C-LD4的亲和力。 N559-聚糖的特征是复杂的核-岩藻糖基化类型,其异质性高达四天线结构,并具有对分的N-乙酰氨基葡萄糖,可以与BoNT / A建立广泛的相互作用。突变体gSV2CLD-Fc N559A在表面等离振子共振(SPR)实验中显示解离速率kd增加了50倍,导致结合亲和力总体下降了12倍。延迟解离可能会为BoNT / A提供更多的时间将其内吞到突触小泡中。总之,我们显示了SV2C-LD4的复杂N559-聚糖的重要性,除了神经节苷脂和SV2C-LD4肽外,还为BoNT / A神经元细胞表面结合和摄取添加了第三个锚点。

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