Department of Medical Biochemistry, Faculty of Medicine, Nigde Omer Halis Demir University, Nigde, Turkey.
Department of Histology and Embryology, Faculty of Medicine, Aydın Adnan Menderes University, Aydın, Turkey.
PLoS One. 2020 May 4;15(5):e0232629. doi: 10.1371/journal.pone.0232629. eCollection 2020.
PIWI-interacting RNAs (piRNAs) play an important role in gametogenesis, fertility and embryonic development. The current study investigated the effect of different doses of pregnant mare serum gonadotrophin/human chorionic gonadotrophin (PMSG/hCG) and repeated ovarian stimulation (OS) on the expression of the Mili, Miwi, Mael, Tdrd1, Tdrd9, qnd Mitopld genes, which have crucial roles in the biogenesis and function of piRNAs. Here, we found that after treatment with 7.5 I.U. PMSG/hCG and two repeated rounds of OS, both the mRNA and protein levels of Tdrd9, Tdrd1 and Mael showed the greatest decrease in the ovarian tissue, but the plasma E2 levels showed the strongest increases (p<0.05). However, we found that the Mitopld, Miwi and Mili gene levels were decreased significantly after treatment with 12.5 I.U. PMSG/hCG. Our results suggested that exogenous gonadotropin administration leads to a significant decrease in the expression of the Mili, Miwi, Mael, Tdrd1, Tdrd9 and Mitopld genes, which are critically important in the piRNA pathway, and the changes in the expression levels of Tdrd9, Tdrd1 and Mael may be associated with plasma E2 levels. New comprehensive studies are needed to reduce the potential effects of OS on the piRNA pathway, which silences transposable elements and maintains genome integrity, and to contribute to the safety of OS.
PIWI 相互作用 RNA(piRNAs)在配子发生、生育力和胚胎发育中发挥重要作用。本研究探讨了不同剂量孕马血清促性腺激素/人绒毛膜促性腺激素(PMSG/hCG)和重复卵巢刺激(OS)对 Mili、Miwi、Mael、Tdrd1、Tdrd9 和 Mitopld 基因表达的影响,这些基因在 piRNA 的生物发生和功能中起着关键作用。在这里,我们发现,在用 7.5 IU PMSG/hCG 处理并进行两轮重复 OS 后,Tdrd9、Tdrd1 和 Mael 的 mRNA 和蛋白水平均显示出卵巢组织中最大的下降,但血浆 E2 水平显示出最强的增加(p<0.05)。然而,我们发现用 12.5 IU PMSG/hCG 处理后,Mitopld、Miwi 和 Mili 基因水平显著下降。我们的结果表明,外源性促性腺激素给药导致 piRNA 途径中至关重要的 Mili、Miwi、Mael、Tdrd1、Tdrd9 和 Mitopld 基因表达显著下降,而 Tdrd9、Tdrd1 和 Mael 的表达水平变化可能与血浆 E2 水平有关。需要进行新的综合研究,以减少 OS 对 piRNA 途径的潜在影响,该途径沉默转座元件并维持基因组完整性,并有助于 OS 的安全性。