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Oxygen governs Gα1β1-3GalNAc epitope in human placenta

机译:氧气治理人胎盘中的Gα1β1-3Galnac表位

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摘要

It is becoming increasingly apparent that the dynamics of glycans reflect the physiological state of cells involved in several cell functions including growth, response to signal molecules, migration, as well as adhesion to, interaction with, and recognition of other cells. The presence of glycoconjugates in human placenta suggests their major role in maternal-fetal exchanges, intercellular adhesion, cellular metabolism, and villous vessel branching. Although several studies have described glycoconjugate distribution in the human placenta descriptions of their physiological function and control mechanisms during placental development are lacking. In this study we investigated the developmental distribution and regulation of placental core 1 O- and N-glycans focusing on early and late first trimester human pregnancy. To define the control mechanisms of the oligosaccharide chains during early placentation process, chorionic villous explants and human trophoblast cell lines were exposed to various oxygen levels. We found that oxygen tension regulates changes in core-1 O-glycan (the disaccharide Gα1β1-3GalNAc) epitope expression levels. Moreover, by double affinity chromatogra-phy and subsequent analysis with mass spectrometry, we identified in the heat shock protein 90-α (HSP90α) a good candidate as carrier of the Gα1β1-3GalNAc epitope at low oxygen tension. Our results support a fundamental role of oxygen tension in modulating glyco-sylation of proteins during placental development.
机译:越来越明显表明聚糖的动态反映了几种细胞功能中涉及的细胞的生理状态,包括生长,对信号分子,迁移以及与其他细胞的相互作用以及识别的粘附性和粘附性和识别。人胎盘中糖缀合物的存在表明它们在母体交换,细胞间粘附,细胞代谢和绒毛血管支化中的主要作用。虽然几项研究已经描述了在胎盘发展期间的人体胎盘描述中的糖谐波分布,但缺乏胎盘发展过程中的控制机制。在这项研究中,我们调查了胎盘核心的发育分配和调节1 O-和N-Glycans在早期和晚期妊娠期孕期妊娠。为了在早期置入过程中定义寡糖链的控制机制,将绒毛膜绒毛植物和人滋养细胞系暴露于各种氧水平。我们发现氧气张力调节核心-1 O-聚糖(二糖Gα1β1-3Galnac)表位表达水平的变化。此外,通过双亲和色谱法和随后用质谱分析,我们在低氧张力下在热休克蛋白90-α(HSP90α)中鉴定为Gα1β1-3GalNAC表位的良好候选候选者。我们的研究结果支持氧气张力在胎盘发育过程中调节蛋白质的甘氨酸的基本作用。

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