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糖蛋白140的糖基化相关作用:配子、卵丘细胞、免疫细胞及临床关联。

Glycosylation related actions of glycodelin: gamete, cumulus cell, immune cell and clinical associations.

作者信息

Seppälä M, Koistinen H, Koistinen R, Chiu P C N, Yeung W S B

机构信息

Department of Clinical Chemistry, University of Helsinki, Helsinki University Central Hospital, Biomedicum Helsinki, 4th Floor, Haartmaninkatu 8, Helsinki, Finland.

出版信息

Hum Reprod Update. 2007 May-Jun;13(3):275-87. doi: 10.1093/humupd/dmm004. Epub 2007 Feb 28.

Abstract

Glycodelin is an example of a glycoprotein whose complex-type glycans mediate biological actions in human reproduction and immune reactions. Being attached to an identical protein backbone, glycodelin oligosaccharides vary significantly from one reproductive tissue to another and have an effect on its own secretion and role in cell communication. For instance, uterine glycodelin-A inhibits sperm-oocyte interaction by binding on the sperm head. This is a glycosylation-dependent phenomenon, in which fucosyltransferase-5 plays a key role. Glycodelin-S from seminal plasma binds evenly around the sperm head and maintains an uncapacitated state in the spermatozoa, until the isoform is detached during sperm passage through the cervix. Glycodelin-F from follicular fluid and Fallopian tube binds to the acrosomal region of the sperm head, thereby inhibiting both the sperm-oocyte binding and premature progesterone-induced acrosome reaction. The cumulus cells surrounding the oocyte can capture glycodelin-A and -F from the surrounding environment and convert these isoforms to a cumulus cell isoform, glycodelin-C. It differs by glycosylation from the other isoforms, and it too attaches on the sperm head, with the highest density in the equatorial region. Glycodelin-C is capable of detaching the sperm-bound inhibitory isoforms so that the sperm-oocyte binding is enhanced. Glycodelin-A also has immunosuppressive actions directed to cellular, humoral and innate immunity. Although these actions depend mainly on the protein backbone, glycosylation also plays a part. Glycosylated glycodelin may be involved in the protection of spermatozoa against maternal immune reactions, and glycodelin also has apoptogenic activity. Some glycosylation patterns of glycodelin may mask its apoptogenic domain. This review updates the recent research and clinical associations of glycodelin, highlighting the role of glycosylation.

摘要

糖蛋白A是一种糖蛋白,其复合型聚糖在人类生殖和免疫反应中发挥生物学作用。糖蛋白A的寡糖连接在相同的蛋白质主链上,但在不同的生殖组织中差异很大,并且对其自身的分泌以及在细胞通讯中的作用产生影响。例如,子宫中的糖蛋白A通过结合精子头部来抑制精子与卵母细胞的相互作用。这是一种依赖糖基化的现象,其中岩藻糖基转移酶5起关键作用。精浆中的糖蛋白S均匀地结合在精子头部周围,并使精子保持未获能状态,直到该异构体在精子通过子宫颈时脱离。卵泡液和输卵管中的糖蛋白F结合在精子头部的顶体区域,从而抑制精子与卵母细胞的结合以及孕酮过早诱导的顶体反应。卵母细胞周围的卵丘细胞可以从周围环境中捕获糖蛋白A和F,并将这些异构体转化为卵丘细胞异构体,即糖蛋白C。它在糖基化方面与其他异构体不同,并且也附着在精子头部,在赤道区域密度最高。糖蛋白C能够使与精子结合的抑制性异构体脱离,从而增强精子与卵母细胞的结合。糖蛋白A还具有针对细胞免疫、体液免疫和固有免疫的免疫抑制作用。尽管这些作用主要取决于蛋白质主链,但糖基化也起一定作用。糖基化的糖蛋白A可能参与保护精子免受母体免疫反应的影响,并且糖蛋白A还具有凋亡诱导活性。糖蛋白A的某些糖基化模式可能会掩盖其凋亡诱导结构域。本文综述更新了糖蛋白A的最新研究和临床关联,突出了糖基化的作用。

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