Department of Laboratory Diagnostics, Division of Laboratory Diagnostics, Faculty of Pharmacy, Wroclaw Medical University, Borowska Street 211A, 50-556 Wroclaw, Poland.
Int J Mol Sci. 2021 Jul 4;22(13):7197. doi: 10.3390/ijms22137197.
Apolipoprotein E (ApoE), a 34-kDa glycoprotein, as part of the high-density lipoprotein (HDL), has antioxidant, anti-inflammatory and antiatherogenic properties. The variability of ApoE expression in the course of some female fertility disorders (endometriosis, POCS), and other gynecological pathologies such as breast cancer, choriocarcinoma, endometrial adenocarcinoma/hyperplasia and ovarian cancer confirm the multidirectional biological function of ApoE, but the mechanisms of its action are not fully understood. It is also worth taking a closer look at the associations between ApoE expression, the type of its genotype and male fertility disorders. Another important issue is the variability of ApoE glycosylation. It is documented that the profile and degree of ApoE glycosylation varies depending on where it occurs, the type of body fluid and the place of its synthesis in the human body. Alterations in ApoE glycosylation have been observed in the course of diseases such as preeclampsia or breast cancer, but little is known about the characteristics of ApoE glycans analyzed in human seminal and blood serum/plasma in the context of male reproductive health. A deeper analysis of ApoE glycosylation in the context of female and male fertility will both enable us to broaden our knowledge of the biochemical and cellular mechanisms in which glycans participate, having a direct or indirect relationship with the fertilization process, and also give us a chance of contributing to the enrichment of the diagnostic panel in infertile women and men, which is particularly important in procedures involved in assisted reproductive techniques. Moreover, understanding the mechanisms of glycoprotein glycosylation related to the course of various diseases and conditions, including infertility, and the interactions between glycans and their specific ligands may provide us with an opportunity to interfere with their course and thus develop new therapeutic strategies. This brief overview details some of the recent advances, mainly from the last decade, in understanding the associations between ApoE expression and some female and male fertility problems, as well as selected female gynecological diseases and male reproductive tract disorders. We were also interested in how ApoE glycosylation changes influence biological processes in the human body, with special attention to human fertility.
载脂蛋白 E(ApoE)是一种 34kDa 的糖蛋白,作为高密度脂蛋白(HDL)的一部分,具有抗氧化、抗炎和抗动脉粥样硬化的特性。ApoE 表达的可变性在一些女性生育障碍(子宫内膜异位症、POCS)以及其他妇科疾病如乳腺癌、绒癌、子宫内膜腺癌/增生和卵巢癌的过程中得到证实,这证实了 ApoE 的多向生物学功能,但作用机制尚不完全清楚。值得进一步研究 ApoE 表达、其基因型类型与男性生育障碍之间的关系。另一个重要问题是 ApoE 糖基化的可变性。有文献记载,ApoE 糖基化的模式和程度因发生部位、体液类型和人体合成部位的不同而不同。在子痫前期或乳腺癌等疾病过程中观察到 ApoE 糖基化的改变,但关于男性生殖健康背景下人精液和血清/血浆中分析的 ApoE 聚糖的特征知之甚少。深入分析女性和男性生育中的 ApoE 糖基化,将使我们能够扩大我们对糖参与的生化和细胞机制的认识,这些机制与受精过程直接或间接相关,也使我们有机会为不孕妇女和男子的诊断面板提供补充,这在辅助生殖技术中尤为重要。此外,了解与各种疾病和状况(包括不孕)过程相关的糖蛋白糖基化的机制,以及聚糖与其特定配体之间的相互作用,可能为我们提供干预其过程的机会,从而开发新的治疗策略。这篇简要综述详细介绍了过去十年中对 ApoE 表达与一些女性和男性生育问题以及一些女性妇科疾病和男性生殖道疾病之间关系的一些最新进展,以及特别关注人类生育的 ApoE 糖基化变化对人体生物过程的影响。