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精子上相关末端糖基对的苷元分析和定量跟踪。

Aglycone Analysis and Quantitative Tracking of Correlated Terminal Glycan Pair on Spermatozoa.

机构信息

State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.

Changshu Foreign Language School, Suzhou 215000, China.

出版信息

Anal Chem. 2024 Oct 15;96(41):16186-16194. doi: 10.1021/acs.analchem.4c02792. Epub 2024 Oct 3.

Abstract

Mammalian sperm glycans directly mediate several key life events. However, previous studies have not focused on two key factors that regulate these processes, the terminal glycan pattern and the anchoring sites. Herein, we group the capping monosaccharide sialic acid (Sia) and its capping substrates galactose/-acetylgalactosamine (Gal/GalNAc) into a "correlated terminal glycan pair" (glycopair) and, for the first time, reveal the differences in the aglycone pattern of this pair on spermatozoa using glyco-selective in situ covalent labeling techniques. Sia is mainly found in glycoproteins, whereas terminal Gal/GalNAc is mainly found in glycolipids. We quantitatively track the dynamic changes of the glycopair during sperm epididymal migration and find that the Sia capping ratio decreases with the increased expression of the glycopair; caudal upswim spermatozoa also show a lower Sia capping ratio than down spermatozoa. We thus propose two new parameters reflecting the terminal glycoforms of spermatozoa, which can well distinguish the maturity of spermatozoa. By fluorescence imaging of the glycopair in different regions of the sperm, we find that different parts of the sperm contribute differently to the overall glycan changes.

摘要

哺乳动物精子糖基直接介导了几个关键的生命事件。然而,之前的研究并没有关注调节这些过程的两个关键因素,即末端糖基模式和锚定位点。在此,我们将加帽单糖唾液酸 (Sia) 及其加帽底物半乳糖/乙酰半乳糖胺 (Gal/GalNAc) 归为“相关末端糖基对”(glycopair),并首次使用糖基选择性原位共价标记技术揭示了精子上该对糖基的糖苷配基模式的差异。Sia 主要存在于糖蛋白中,而末端 Gal/GalNAc 主要存在于糖脂中。我们定量跟踪了糖对在精子附睾迁移过程中的动态变化,发现随着糖对表达的增加,Sia 的加帽比例降低;尾部上冲精子的 Sia 加帽比例低于向下运动的精子。因此,我们提出了两个反映精子末端糖基形式的新参数,它们可以很好地区分精子的成熟度。通过对精子不同区域的糖对进行荧光成像,我们发现精子的不同部位对整体糖变化的贡献不同。

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