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结构单元、糖基化表位/哺乳动物 N-聚糖与 ConA 糖基相互作用、其编码和识别因子的作用。

Roles of the structural units, glycotopes / mammalian N-glycans for Con A-glycan interactions, their codes, and their recognition factors.

机构信息

Glycome Research Laboratory, Institute of Molecular and Cellular Biology, College of Medicine, Chang-Gung University, Kwei-san, Tao-yuan, 33302, Taiwan.

出版信息

Glycoconj J. 2023 Oct;40(5):587-608. doi: 10.1007/s10719-023-10129-4. Epub 2023 Sep 11.

Abstract

The binding property of Con A has been studied intensively and applied widely to glycoconjugates / glycobiology for over 80 years. However, its role and functional relationship of Con A with these mammalian structural units, glycotopes, N-glycan chains, as well as their polyvalent forms in N-glycoproteins involved in the Con A-glycan interactions have not been well defined and organized. In this study, the recognition factors involved in these interactions were analyzed by our well developed method- the enzyme linked lectinosorbent (ELLSA) and inhibition assay. Based on all the data obtained, it is concluded that Con A, as previously reported, has a relatively broad and wide recognition ability of the Manα1 → and Glcα1 → related glycans. It reacted not only strongly with yeast mannan and glycogens, but also bound well with a large number of mammalian N-glycans, including the N-glycans of rat sublingual gp (RSL), human Tamm-Horsfall glycoprotein (THGP), thyroglobulin and lactoferrin. The recognition specificity of Con A towards ligands, expressed by Molar Relative Potency (Molar R.P.), in a decreasing order is as follows: α1 → 3, α1 → 6 Mannopentaose (M) and Biantennary N-linked core pentasaccharide (M) ≥ α1 → 3, α1 → 6 Mannotriose (M) > Manα1 → 3Man (α1 → 3Mannobiose), Manα1 → 2Man (α1 → 2Mannobiose), Manα1 → 6Man (α1 → 6Mannobiose), Manα1 → 4Man (α1 → 4Mannobiose) > GlcNAcβ1 → 2Man (β1 → 2 N-Acetyl glucosamine-mannose) > Manα1 → /Glcα1 → > Man > Glc, while Gal / GalNAc were inactive. Furthermore, the Man related code system, in this study, is proposed to express by both numbers of Man and GlcNAcβ1 → branches (M to M / M) and a table of three Manα1 → and Glcα1 → related biomasses of six recognition factors involved in the Con A-glycan interactions has also been demonstrated. These themes should be one of the most valuable advances since 1980s.

摘要

植物凝集素 Con A 的结合特性已经被深入研究,并在 80 多年的时间里广泛应用于糖缀合物/糖生物学领域。然而,Con A 与这些哺乳动物结构单元、糖基、N-聚糖链以及它们在参与 Con A-聚糖相互作用的 N-糖蛋白中的多价形式的作用和功能关系尚未得到很好的定义和组织。在这项研究中,我们通过开发的酶联凝集素吸附(ELLSA)和抑制测定法分析了这些相互作用中的识别因子。基于所有获得的数据,得出的结论是,正如先前报道的那样,Con A 具有相对广泛和广泛的识别 Manα1→和 Glcα1→相关聚糖的能力。它不仅与酵母甘露聚糖和糖元强烈反应,而且还与大量哺乳动物 N-聚糖结合良好,包括大鼠舌下 gp(RSL)的 N-聚糖、人 Tamm-Horsfall 糖蛋白(THGP)、甲状腺球蛋白和乳铁蛋白。Con A 对配体的识别特异性,用摩尔相对效力(Molar R.P.)表示,按降序排列如下:α1→3、α1→6 甘露五糖(M)和双触角 N-连接核心五糖(M)≥α1→3、α1→6 甘露三糖(M)>Manα1→3Man(α1→3 甘露二糖)、Manα1→2Man(α1→2 甘露二糖)、Manα1→6Man(α1→6 甘露二糖)、Manα1→4Man(α1→4 甘露二糖)>GlcNAcβ1→2Man(β1→2 乙酰氨基葡萄糖-甘露糖)>Manα1→/Glcα1→>Man>Glc,而 Gal/ GalNAc 则没有活性。此外,本研究提出了一个基于 Man 和 GlcNAcβ1→分支(M 到 M/M)数量的 Man 相关编码系统,并展示了涉及 Con A-聚糖相互作用的六个识别因子的三个α1→和 Glcα1→相关生物质的表格。这些主题应该是自 20 世纪 80 年代以来最有价值的进展之一。

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