Kenigsberg Shlomit, Lima Patricia D A, Maghen Leila, Wyse Brandon A, Lackan Chantal, Cheung Annie N Y, Tsang Benjamin K, Librach Clifford L
CReATe Fertility Centre, Toronto, Canada.
Department of Obstetrics & Gynecology, University of Ottawa, Ottawa, Canada.
PLoS One. 2017 Apr 13;12(4):e0174873. doi: 10.1371/journal.pone.0174873. eCollection 2017.
The encoded transcript of the Maestro-Male-specific Transcription in the developing Reproductive Organs (MRO) gene exhibits sexual dimorphic expression during murine gonadal development. The gene has no homology to any known gene and its expression pattern, protein function or structure are still unknown. Previously, studying gene expression in human ovarian cumulus cells, we found increased expression of MRO in lean-type Polycystic Ovarian Syndrome (PCOS) subjects, as compared to controls. In this study, we examined the MRO splice variants and protein expression pattern in various human tissues and cells. We found a differential expression pattern of the MRO 5'-UTR region in luteinized granulosa-cumulus cells and in testicular tissues as compared to non-gonadal tissues. Our study also shows a punctate nuclear expression pattern and disperse cytoplasmic expression pattern of the MRO protein in human granulosa-cumulus cells and in testicular germ cells, which was later validated by western blotting. The tentative and unique features of the protein hampered our efforts to gain more insight about this elusive protein. A better understanding of the tissue-specific MRO isoforms expression patterns and the unique structure of the protein may provide important insights into the function of this gene and possibly to the pathophysiology of PCOS.
在小鼠性腺发育过程中,发育中的生殖器官(MRO)基因的编码转录本呈现出性二态性表达。该基因与任何已知基因均无同源性,其表达模式、蛋白质功能或结构仍不清楚。此前,在研究人类卵巢颗粒细胞中的基因表达时,我们发现与对照组相比,瘦型多囊卵巢综合征(PCOS)患者的MRO表达增加。在本研究中,我们检测了MRO在各种人类组织和细胞中的剪接变体和蛋白质表达模式。我们发现,与非性腺组织相比,MRO 5'-UTR区域在黄体化颗粒-卵丘细胞和睾丸组织中存在差异表达模式。我们的研究还显示,MRO蛋白在人类颗粒-卵丘细胞和睾丸生殖细胞中呈现点状核表达模式和弥散性细胞质表达模式,随后通过蛋白质印迹法得到了验证。该蛋白质的初步和独特特征阻碍了我们进一步深入了解这种难以捉摸的蛋白质。更好地了解组织特异性MRO异构体的表达模式和该蛋白质的独特结构,可能会为该基因的功能以及PCOS的病理生理学提供重要见解。