Department of Pathophysiology, Institute of Biomedicine and Translational Medicine, Faculty of Medicine, Tartu University, Tartu, Estonia.
Department of Hormonal Action Mechanisms, Institute of Animal Reproduction and Food Research Polish Academy of Sciences, Olsztyn, Poland.
Cell Commun Signal. 2019 Nov 14;17(1):146. doi: 10.1186/s12964-019-0448-x.
Successful establishment of pregnancy hinges on appropriate communication between the embryo and the uterus prior to implantation, but the nature of this communication remains poorly understood. Here, we tested the hypothesis that the endometrium is receptive to embryo-derived signals in the form of RNA.
We have utilized a non-contact co culture system to simulate the conditions of pre implantation environment of the uterus. We bioorthogonally tagged embryonic RNA and tracked the transferred transcripts to endometrium. Transferred transcripts were separated from endometrial transcripts and sequenced. Changes in endometrial transcripts were quantified using quantitative PCR.
We show that three specific transcripts are transferred to endometrial cells. We subsequently demonstrate a role of extracellular vesicles (EVs) in this process, as EVs obtained from cultured trophoblast spheroids incubated with endometrial cells induced down-regulation of all the three identified transcripts in endometrial cells. Finally, we show that EVs/nanoparticles captured from conditioned culture media of viable embryos as opposed to degenerating embryos induce ZNF81 down-regulation in endometrial cells, hinting at the functional importance of this intercellular communication.
Ultimately, our findings demonstrate the existence of an RNA-based communication which may be of critical importance for the establishment of pregnancy.
胚胎着床前,胚胎与子宫之间需要进行适当的交流,这是成功妊娠的关键,但这种交流的性质仍知之甚少。在这里,我们假设子宫内膜能够接收胚胎来源的 RNA 信号,对此进行了验证。
我们利用非接触共培养系统模拟了子宫着床前的环境条件。我们对胚胎 RNA 进行生物正交标记,并追踪转染的转录本到子宫内膜。将转染的转录本与子宫内膜转录本分离并进行测序。利用定量 PCR 定量检测子宫内膜转录本的变化。
我们发现有 3 种特定的转录本被转移到了子宫内膜细胞中。随后,我们证明了细胞外囊泡(EVs)在这个过程中起作用,因为与子宫内膜细胞共培养的培养的滋养层细胞球体中提取的 EVs 诱导了子宫内膜细胞中所有 3 种鉴定出的转录本的下调。最后,我们发现与退化胚胎相比,从有活力胚胎的条件培养基中捕获的 EVs/纳米颗粒能诱导子宫内膜细胞中 ZNF81 的下调,提示这种细胞间通讯具有重要的功能意义。
最终,我们的研究结果表明存在基于 RNA 的通讯,这对妊娠的建立可能具有至关重要的意义。