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Enzymatic properties and subtle differences in the substrate specificity of phylogenetically distinct invertebrate N-glycan processing hexosaminidases

机译:系统发育上不同的无脊椎动物N-聚糖加工己糖胺酶的酶学性质和底物特异性的细微差异

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摘要

Fused lobes (FDL) hexosaminidases are the most recently genetically defined glycosidases involved in the biosynthesis of N-glycans in invertebrates, and their narrow specificity is essential for the generation of paucimannosidic N-glycans in insects. In this study, we explored the potential of FDL hexosaminidases in the utilization of different artificial and natural substrates, both as purified, native compounds or generated in vitro using various relevant glycosyltransferases. In addition to the already-known FDL enzyme from Drosophila melanogaster, we now have identified and characterized the Apis mellifera FDL homolog. The enzymatic properties of the soluble forms of the affinity-purified insect FDL enzymes, expressed in both yeast and insect cells, were compared with those of the phylogenetically distinct recombinant Caenorhabditis elegans FDL-like enzymes and the N-acetylgalactosamine (GalNAc)-specific Caenorhabditis hexosaminidase HEX-4. In tests with a range of substrates, including natural N-glycans, we show that the invertebrate FDL(-like) enzymes are highly specific for N-acetylglucosamine attached to the α1,3-mannose, but under extreme conditions also remove other terminal GalNAc and N-acetylglucosamine residues. Recombinant FDL also proved useful in the analysis of complex mixtures of N-glycans originating from wild-type and mutant Caenorhabditis strains, thereby aiding isomeric definition of paucimannosidic and hybrid N-glycans in this organism. Furthermore, differences in activity and specificity were shown for two site-directed mutants of Drosophila FDL, compatible with the high structural similarity of chitinolytic and N-glycan degrading exohexosaminidases in insects. Our studies are another indication for the variety of structural and function aspects in the GH20 hexosaminidase family important for both catabolism and biosynthesis of glycoconjugates in eukaryotes.
机译:融合叶(FDL)己糖胺酶是无脊椎动物N-聚糖生物合成中涉及的最新遗传定义的糖苷酶,它们的狭窄特异性对于在昆虫中生成低聚甘露糖苷N-聚糖至关重要。在这项研究中,我们探索了FDL己糖胺酶在利用不同的人工和天然底物(纯化的天然化合物或使用各种相关糖基转移酶体外产生的底物)中的潜力。除了果蝇果蝇的已知FDL酶外,我们现在还鉴定和鉴定了蜜蜂Apis mellifera FDL同源物。将在酵母和昆虫细胞中表达的亲和纯化昆虫FDL酶可溶性形式的酶学性质与系统发育独特的重组秀丽隐杆线虫FDL样酶和N-乙酰半乳糖胺(GalNAc)特异的秀丽隐杆线虫的酶学性质进行了比较己糖胺酶HEX-4。在包括天然N-聚糖在内的多种底物的测试中,我们表明无脊椎动物FDL(-like)酶对附着于α1,3-甘露糖的N-乙酰氨基葡萄糖具有高度特异性,但在极端条件下也会去除其他末端GalNAc和N-乙酰氨基葡萄糖残基。重组FDL还被证明可用于分析源自野生型和突变型Caenorhabditis菌株的N-聚糖的复杂混合物,从而有助于在该生物体中修饰甘菊糖苷和杂合N-聚糖。此外,果蝇FDL的两个定点突变体的活性和特异性差异均与昆虫中的几丁质分解酶和N-聚糖降解的exohexosaminidases的高度结构相似性兼容。我们的研究为GH20己糖胺酶家族中结构和功能方面的多种变化提供了另一个指示,这对于真核生物中糖缀合物的分解代谢和生物合成都很重要。

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