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蜂王浆糖蛋白中阴离子和两性离子 N-聚糖的对映异构体分离与识别。

Isomeric Separation and Recognition of Anionic and Zwitterionic N-glycans from Royal Jelly Glycoproteins.

机构信息

From the ‡Department für Chemie, Universität für Bodenkultur, 1190 Wien, Austria.

§Institutionen för Biomedicin, Göteborgs universitet, 405 30 Göteborg, Sweden.

出版信息

Mol Cell Proteomics. 2018 Nov;17(11):2177-2196. doi: 10.1074/mcp.RA117.000462. Epub 2018 Aug 13.

Abstract

Royal jelly has received attention because of its necessity for the development of queen honeybees as well as claims of benefits on human health; this product of the hypopharyngeal glands of worker bees contains a large number of proteins, some of which have been claimed to have various biological effects only in their glycosylated state. However, although there have been glycomic and glycoproteomic analyses in the past, none of the glycan structures previously defined would appear to have potential to trigger specific biological functions. In the current study, whole royal jelly as well as single protein bands were subject to off-line LC-MALDI-TOF MS glycomic analyses, complemented by permethylation, Western blotting and arraying data. Similarly to recent in-depth studies on other insect species, previously overlooked glucuronic acid termini, sulfation of mannose residues and core β-mannosylation of the N-glycans were found; additionally, a relatively rare zwitterionic modification with phosphoethanolamine is present, in contrast to the phosphorylcholine occurring in lepidopteran species. Indicative of tissue-specific remodelling of glycans in the Golgi apparatus of hypopharyngeal gland cells, only a low amount of fucosylated or paucimannosidic glycans were detected as compared with other insect samples or even bee venom. The unusual modifications of hybrid and multiantennary structures defined here may not only have a physiological role in honeybee development, but represent epitopes recognized by pentraxins with roles in animal innate immunity.

摘要

蜂王浆因其对蜂王发育的必要性以及对人类健康益处的说法而受到关注; 这种工蜂下咽腺产物含有大量蛋白质,其中一些据称仅在糖基化状态下具有各种生物效应。然而,尽管过去已经进行了糖组学和糖蛋白质组学分析,但以前定义的糖链结构似乎都没有潜在的触发特定生物功能的能力。在本研究中,对蜂王浆和单一蛋白质条带进行离线 LC-MALDI-TOF MS 糖组学分析,辅以上甲基化、Western 印迹和阵列数据。与最近对其他昆虫物种的深入研究类似,以前被忽视的葡萄糖醛酸末端、甘露糖残基的硫酸化和 N-聚糖的核心 β-甘露糖基化被发现; 此外,与鳞翅目物种中存在的磷酸胆碱相比,还存在一种相对罕见的带内正离子修饰的磷酸乙醇胺。与其他昆虫样本甚至蜂毒相比,这表明下咽腺细胞高尔基体中糖链的组织特异性重塑,只有少量的岩藻糖基化或低甘露糖基化聚糖被检测到。这里定义的杂种和多触角结构的不寻常修饰不仅可能在蜜蜂发育中具有生理作用,而且代表了在动物先天免疫中具有作用的五聚蛋白识别的表位。

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The underestimated N-glycomes of lepidopteran species.鳞翅目物种被低估的 N-糖组。
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