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使用酶合成的荧光标记聚糖作为底物的内切糖苷酶分析,以揭示酶底物特异性。

Endoglycosidase assay using enzymatically synthesized fluorophore-labeled glycans as substrates to uncover enzyme substrate specificities.

机构信息

Bio-techne, R&D Systems, Inc., Minneapolis, MN, 55413, USA.

出版信息

Commun Biol. 2022 May 25;5(1):501. doi: 10.1038/s42003-022-03444-3.

Abstract

Glycan synthesis and degradation are not template but enzyme only driven processes. Substrate specificities of glyco-enzymes determine the structures of specific natural glycans. Using endoglycosidases as examples, we describe methods to study these enzymes. Endoglycosidase S/S2 specifically deglycosylates the conserved N-glycans of human immunoglobulin G. Endo-β-Galactosidase hydrolyzes internal β-galactosyl linkage in polylactosaminoglycan structures. To assay these enzymes, eleven fluorophore-labeled N-glycans and one polylactosamine ladder are synthesized. Digestion of these glycans result in mobility shift in gel electrophoresis. Results on Endo S/S2 assays reveal that they are most active on the agalactosylated biantennary N-glycans with decreased activity on galactosylated and sialylated glycans and little or no activity on branched and bisected glycans. Assays on Endo-β-Gal reveal that the enzyme is active from pH 3.5 to 9.0 and the β3-linked GlcNAc adjacent to the cleavage site is minimal for the enzyme recognition with the optimal recognition motif spanning at least four lactosamine repeats. Our methods will provide an opportunity to understand how specific glycans are synthesized and degraded.

摘要

糖基合成和降解不是模板驱动的,而是仅由酶驱动的过程。糖基酶的底物特异性决定了特定天然聚糖的结构。我们以内切糖苷酶为例,描述了研究这些酶的方法。内切糖苷酶 S/S2 特异性地糖基化人免疫球蛋白 G 的保守 N-聚糖。内-β-半乳糖苷酶水解多乳糖胺聚糖结构中的内部β-半乳糖苷键。为了测定这些酶的活性,我们合成了 11 种荧光标记的 N-聚糖和 1 种多乳糖胺梯。这些糖的消化导致凝胶电泳中的迁移率发生变化。对 Endo S/S2 测定的结果表明,它们在agalactosylated 双触角 N-聚糖上最活跃,在 galactosylated 和 sialylated 聚糖上活性降低,在分支和双分叉聚糖上几乎没有活性或没有活性。对 Endo-β-Gal 的测定表明,该酶在 pH 3.5 到 9.0 之间具有活性,并且紧邻切割位点的β3-连接的 GlcNAc 是酶识别的最小要求,最佳识别模体至少跨越四个乳糖胺重复。我们的方法将为理解特定聚糖的合成和降解提供机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ec8/9132957/909ce8bd48c8/42003_2022_3444_Fig1_HTML.jpg

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