Swansea University Medical School, Singleton Park, Swansea, SA2 8PP, Wales, UK.
Bruker UK Limited, Banner Lane, Coventry, CV4 9GH, UK.
J Nanobiotechnology. 2021 Feb 17;19(1):50. doi: 10.1186/s12951-021-00793-9.
Sialyl-Lewis X/L-selectin high affinity binding interactions between transmembrane O-glycosylated mucins proteins and the embryo have been implicated in implantation processes within the human reproductive system. However, the adhesive properties of these mucins at the endometrial cell surface are difficult to resolve due to known discrepancies between in vivo models and the human reproductive system and a lack of sensitivity in current in vitro models. To overcome these limitations, an in vitro model of the human endometrial epithelial was interrogated with single molecule force spectroscopy (SMFS) to delineate the molecular configurations of mucin proteins that mediate the high affinity L-selectin binding required for human embryo implantation.
This study reveals that MUC1 contributes to both the intrinsic and extrinsic adhesive properties of the HEC-1 cellular surface. High expression of MUC1 on the cell surface led to a significantly increased intrinsic adhesion force (148 pN vs. 271 pN, p < 0.001), whereas this adhesion force was significantly reduced (271 pN vs. 118 pN, p < 0.001) following siRNA mediated MUC1 ablation. Whilst high expression of MUC1 displaying elevated glycosylation led to strong extrinsic (> 400 pN) L-selectin binding at the cell surface, low expression of MUC1 with reduced glycosylation resulted in significantly less (≤200 pN) binding events.
An optimal level of MUC1 together with highly glycosylated decoration of the protein is critical for high affinity L-selectin binding. This study demonstrates that MUC1 contributes to cellular adhesive properties which may function to facilitate trophoblast binding to the endometrial cell surface through the L-selectin/sialyl-Lewis x adhesion system subsequent to implantation.
跨膜 O-糖基化粘蛋白蛋白与胚胎之间的唾液酸化-Lewis X/L-选择素高亲和力结合相互作用已被牵连到人类生殖系统内的着床过程中。然而,由于体内模型与人类生殖系统之间存在已知差异以及当前体外模型的灵敏度不足,这些粘蛋白在子宫内膜细胞表面的粘附特性难以确定。为了克服这些限制,使用单分子力谱(SMFS)检测体外人子宫内膜上皮细胞模型,以描绘介导人类胚胎着床所需的 L-选择素高亲和力结合的粘蛋白蛋白的分子构型。
本研究表明 MUC1 有助于 HEC-1 细胞表面的固有和外在粘附特性。细胞表面上 MUC1 的高表达导致固有粘附力显著增加(148 pN 对 271 pN,p<0.001),而 siRNA 介导的 MUC1 消融后,这种粘附力显著降低(271 pN 对 118 pN,p<0.001)。虽然高表达显示出升高的糖基化的 MUC1 导致细胞表面上强的外在(>400 pN)L-选择素结合,但低表达的 MUC1 具有降低的糖基化导致结合事件明显减少(≤200 pN)。
MUC1 的最佳水平以及蛋白质的高度糖基化修饰对于 L-选择素的高亲和力结合至关重要。本研究表明 MUC1 有助于细胞粘附特性,这可能有助于滋养层通过 L-选择素/唾液酸化-Lewis x 粘附系统与子宫内膜细胞表面结合,随后发生着床。