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首页> 外文期刊>Glycobiology. >The lectin domains of polypeptide GalNAc-transferases exhibit carbohydrate-binding specificity for GalNAc: lectin binding to GalNAc-glycopeptide substrates is required for high density GalNAc-O-glycosylation.
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The lectin domains of polypeptide GalNAc-transferases exhibit carbohydrate-binding specificity for GalNAc: lectin binding to GalNAc-glycopeptide substrates is required for high density GalNAc-O-glycosylation.

机译:多肽GalNAc转移酶的凝集素结构域对GalNAc表现出碳水化合物结合特异性:凝集素与GalNAc-糖肽底物的结合是高密度GalNAc-O-糖基化所必需的。

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摘要

Initiation of mucin-type O-glycosylation is controlled by a large family of UDP GalNAc:polypeptide N-acetylgalactosaminyltransferases (GalNAc-transferases). Most GalNAc-transferases contain a ricin-like lectin domain in the C-terminal end, which may confer GalNAc-glycopeptide substrate specificity to the enzyme. We have previously shown that the lectin domain of GalNAc-T4 modulates its substrate specificity to enable unique GalNAc-glycopeptide specificities and that this effect is selectively inhibitable by GalNAc; however, direct evidence of carbohydrate binding of GalNAc-transferase lectins has not been previously presented. Here, we report the direct carbohydrate binding of two GalNAc-transferase lectin domains, GalNAc-T4 and GalNAc-T2, representing isoforms reported to have distinct glycopeptide activity (GalNAc-T4) and isoforms without apparent distinct GalNAc-glycopeptide specificity (GalNAc-T2). Both lectins exhibited specificity for binding of free GalNAc. Kinetic and time-course analysis of GalNAc-T2 demonstrated that the lectin domain did not affect transfer to initial glycosylation sites, but selectively modulated velocity of transfer to subsequent sites and affected the number of acceptor sites utilized. The results suggest that GalNAc-transferase lectins serve to modulate the kinetic properties of the enzymes in the late stages of the initiation process of O-glycosylation to accomplish dense or complete O-glycan occupancy.
机译:粘蛋白型O-糖基化的起始受UDP大族GalNAc:多肽N-乙酰半乳糖胺基转移酶(GalNAc-转移酶)的控制。大多数GalNAc转移酶在C末端均含有蓖麻毒蛋白样凝集素结构域,这可能赋予GalNAc-糖肽底物特异性。先前我们已经表明,GalNAc-T4的凝集素结构域可调节其底物特异性,以实现独特的GalNAc-糖肽特异性,并且该作用可被GalNAc选择性抑制。然而,先前没有提出直接结合碳水化合物结合GalNAc-转移酶凝集素的证据。在这里,我们报告两个GalNAc-转移酶凝集素域,GalNAc-T4和GalNAc-T2的直接碳水化合物结合,代表据报道具有独特的糖肽活性(GalNAc-T4)和没有明显的GalNAc-糖肽特异性(GalNAc-T2 )。两种凝集素均显示出结合游离GalNAc的特异性。 GalNAc-T2的动力学和时程分析表明,凝集素结构域不影响转移至初始糖基化位点,但选择性调节转移至后续位点的速度,并影响所利用的受体位点的数量。结果表明,GalNAc-转移酶凝集素可在O-糖基化起始过程的后期调节酶的动力学特性,以实现密集或完全的O-聚糖占用。

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