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通过超微结构细胞化学对人卵母细胞透明带和皮质颗粒进行碳水化合物分析。

Carbohydrate analysis of the zona pellucida and cortical granules of human oocytes by means of ultrastructural cytochemistry.

作者信息

Jiménez-Movilla María, Avilés Manuel, Gómez-Torres María José, Fernández-Colom Pedro José, Castells María Teresa, de Juan Joaquín, Romeu Alberto, Ballesta José

机构信息

Department of Cell Biology, Faculty of Medicine, University of Murcia, Murcia, Spain.

出版信息

Hum Reprod. 2004 Aug;19(8):1842-55. doi: 10.1093/humrep/deh311. Epub 2004 Jun 24.

Abstract

BACKGROUND

The zona pellucida (ZP), the mammalian oocyte coat, consists of a restricted number of highly glycosylated proteins. In vitro sperm binding studies suggest a higher binding affinity for the outer region of the ZP compared to its inner region in different species. However, the reason for this difference in binding distribution remains unresolved. Many studies suggest that the carbohydrate sequences linked to ZP glycoproteins act as ligands for sperm binding to this matrix.

METHODS

Lectins and antibodies that recognize different carbohydrates were employed to perform an ultrastructural analysis of human ZP and cortical granule glycosylation.

RESULTS

This study reveals variable glycosylation of the human ZP throughout its thickness, with pronounced differences between the most external and internal regions of this matrix. The binding studies also indicate that ZP glycoproteins express some carbohydrate sequences not previously detected in other species. Finally, cytochemical analysis of human cortical granules suggests similarities in glycosylation to ZP glycoproteins but not to cortical granules from other mammalian species.

CONCLUSION

A heterogeneous carbohydrate composition was observed in the thickness of the human ZP that could be responsible for the different sperm binding affinity detected between the outer and inner regions of the ZP.

摘要

背景

透明带(ZP)是哺乳动物卵母细胞的包膜,由数量有限的高度糖基化蛋白组成。体外精子结合研究表明,在不同物种中,精子对透明带外部区域的结合亲和力高于其内部区域。然而,这种结合分布差异的原因仍未得到解决。许多研究表明,与透明带糖蛋白相连的碳水化合物序列作为精子结合到该基质的配体。

方法

使用识别不同碳水化合物的凝集素和抗体对人透明带和皮质颗粒糖基化进行超微结构分析。

结果

本研究揭示了人透明带在其整个厚度上的可变糖基化,在该基质的最外部和内部区域之间存在明显差异。结合研究还表明,透明带糖蛋白表达一些在其他物种中未检测到的碳水化合物序列。最后,对人皮质颗粒的细胞化学分析表明,其糖基化与透明带糖蛋白相似,但与其他哺乳动物物种的皮质颗粒不同。

结论

在人透明带的厚度中观察到异质碳水化合物组成,这可能是导致在透明带外部和内部区域检测到不同精子结合亲和力的原因。

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