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Endometrial apical glycoproteomic analysis reveals roles for cadherin 6, desmoglein-2 and plexin b2 in epithelial integrity

机译:子宫内膜根尖糖蛋白组学分析揭示钙黏着蛋白6,桥粒芯蛋白2和丛蛋白b2在上皮完整性中的作用

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Implantation failure is one of the major causes of infertility and remains a major barrier to assisted reproduction success. Initial receptivity to implantation is regulated by the endometrial luminal epithelium under maternal hormonal control. Identification of epithelial cell surface components involved in embryo attachment will have translational applications in early pregnancy failure, infertility and contraception. In this study, vectorial biotinylation has been used to characterize the apical glycoproteome of Ishikawa cells, a polarized cell line that serves as a model of the implantation-receptive human endometrial luminal epithelium. Of 46 surface-associated glycoproteins detected by mass spectrometry, half are newly reported in this cell type; a subgroup of these were chosen for evaluation in tissue, and all were shown to be expressed apically in vivo in the mid-secretory (implantation) phase of the menstrual cycle, thus validating the model. Eleven adhesion molecules were detected, some already known to be involved in implantation, others novel. Cadherin 6, desmoglein 2 and plexin b2 were surprisingly found in the apical as well as the lateral membrane domain; their knock-down compromised epithelial integrity. This method of targeting glycosylated apical surface moieties in a polarized epithelial culture model shows excellent selectivity and identifies candidate cell adhesion molecules that are also present in vivo in secretory phase endometrial epithelium.
机译:植入失败是不育的主要原因之一,并且仍然是辅助生殖成功的主要障碍。在母体荷尔蒙控制下,子宫内膜腔上皮调节着床初期的接受能力。鉴定涉及胚胎附着的上皮细胞表面成分将在早期妊娠失败,不育和避孕方面具有翻译应用。在这项研究中,矢量生物素化已用于表征Ishikawa细胞的顶端糖蛋白组,Ishikawa细胞是一种极化的细胞系,可作为接受植入的人子宫内膜腔上皮的模型。质谱检测到的46种与表面相关的糖蛋白中,有一半是新报道的这种细胞类型。选择其中的一个亚组进行组织评价,结果显示它们均在月经周期的分泌中期(着床)阶段在体内顶峰表达,从而验证了该模型。检测到11个粘附分子,其中一些已知与植入有关,另一些则是新颖的。钙黏着蛋白6,桥粒芯蛋白2和丛蛋白b2令人惊讶地发现在顶端和外侧膜域中。它们的击倒损害了上皮的完整性。在极化上皮培养模型中靶向糖基化顶端表面部分的这种方法显示出极好的选择性,并鉴定了体内分泌层子宫内膜上皮中也存在的候选细胞粘附分子。

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