Luo Chao, Zhang Jiakai, Bo Le, Wei Lun, Yang Guangzhao, Gao Shasha, Mao Caiping
Reproductive Medicine Center, First Affiliated Hospital of Soochow University, Suzhou, Jiangsu, China.
Monash University, Caulfield East, Melbourne, VIC, Australia.
Front Genet. 2022 Oct 13;13:956805. doi: 10.3389/fgene.2022.956805. eCollection 2022.
Premature ovarian insufficiency, characterized by ovarian infertility and low fertility, has become a significant problem in developed countries due to its propensity for late delivery. It has been described that the vital role of lncRNA in the development and progression of POI. The aim of this work was to create a POI-based lncRNA-mRNA network (POILMN) to recognize key lncRNAs. Overall, differently expressed mRNAs (DEGs) and differently expressed lncRNAs (DELs) were achieved by using the AnnoProbe and limma R packages. POI-based lncRNA-mRNA network (POILMN) construction was carried out using the tinyarray R package and hypergeometric distribution. To identify key lncRNAs, we used CentiScaPe plug-in Cytoscape as a screening tool. In total, 244 differentially expressed lncRNAs (DELs) and 288 differentially expressed mRNAs (DEGs) were obtained in this study. Also, 177 lncRNA/mRNA pairs (including 39 lncRNAs and 86 mRNAs) were selected using the hypergeometric test. Finally, we identified four lncRNA (HCP5, NUTM2A-AS1, GABPB1-IT1, and SMIM25) intersections by topological analysis between two centralities (degree and betweenness), and we explored their subnetwork GO and KEGG pathway enrichment analysis. Here, we have provided strong evidence for a relationship with apoptosis, DNA repair damage, and energy metabolism terms and pathways in the key lncRNAs in our POI-based lncRNA-mRNA network. In addition, we evaluated the localization information of genes related to POI and found that genes were more distributed on chromosomes 15, 16, 17, and 19. However, more experiments are needed to confirm the functional significance of such predicted lncRNA/mRNA. In conclusion, our study identified four long non-coding RNA molecules that may be relevant to the progress of premature ovarian insufficiency.
卵巢早衰以卵巢不孕和生育力低下为特征,由于其倾向于晚育,已成为发达国家的一个重大问题。已有研究表明lncRNA在卵巢早衰的发生和发展中起着至关重要的作用。这项工作的目的是创建一个基于卵巢早衰的lncRNA - mRNA网络(POILMN)来识别关键lncRNA。总体而言,使用AnnoProbe和limma R包获得了差异表达的mRNA(DEG)和差异表达的lncRNA(DEL)。基于卵巢早衰的lncRNA - mRNA网络(POILMN)构建使用tinyarray R包和超几何分布进行。为了识别关键lncRNA,我们使用CentiScaPe插件Cytoscape作为筛选工具。在本研究中,总共获得了244个差异表达的lncRNA(DEL)和288个差异表达的mRNA(DEG)。此外,使用超几何检验选择了177个lncRNA/mRNA对(包括39个lncRNA和86个mRNA)。最后,通过两种中心性(度和介数)之间的拓扑分析,我们确定了四个lncRNA(HCP5、NUTM2A - AS1、GABPB1 - IT1和SMIM25)交叉点,并探索了它们的子网GO和KEGG通路富集分析。在这里,我们为基于卵巢早衰的lncRNA - mRNA网络中的关键lncRNA与凋亡、DNA修复损伤以及能量代谢术语和通路之间的关系提供了有力证据。此外,我们评估了与卵巢早衰相关基因的定位信息,发现基因更多地分布在15号、16号、17号和19号染色体上。然而,需要更多实验来证实这种预测的lncRNA/mRNA的功能意义。总之,我们的研究确定了四个可能与卵巢早衰进展相关的长链非编码RNA分子。