Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8645253 | Gene | 2018 | 51 Pages |
Abstract
Polycystic ovary syndrome (PCOS) is one of the most common endocrine disorders in reproductive-aged women. However, the exact pathophysiology of PCOS remains largely unclear. We performed deep sequencing to investigate the mRNA and long noncoding RNA (lncRNA) expression profiles in the ovarian tissues of letrozole-induced PCOS rat model and control rats. A total of 2147 mRNAs and 158 lncRNAs were differentially expressed between the PCOS models and control. Gene ontology analysis indicated that differentially expressed mRNAs were associated with biological adhesion, reproduction, and metabolic process. Pathway analysis results indicated that these aberrantly expressed mRNAs were related to several specific signaling pathways, including insulin resistance, steroid hormone biosynthesis, PPAR signaling pathway, cell adhesion molecules, autoimmune thyroid disease, and AMPK signaling pathway. The relative expression levels of mRNAs and lncRNAs were validated through qRT-PCR. LncRNA-miRNA-mRNA network was constructed to explore ceRNAs involved in the PCOS model and were also verified by qRTPCR experiment. These findings may provide insight into the pathogenesis of PCOS and clues to find key diagnostic and therapeutic roles of lncRNA in PCOS.
Keywords
Tenascin CqRT-PCRSPSSPPART2DGDMT1DMPCOSINSL3AMPKMREsDAPK1NEAT1Nuclear enriched abundant transcript 1Steroid receptor RNA activatorGECsmiRNA recognition elementsNODlncRNATNCAMP-activated protein kinaseH&EEstradiolstatistical package for social sciencesDeep sequencingtriglyceridetestosteroneSraKEGG یا Kyoto Encyclopedia of Genes and Genomes Kyoto Encyclopedia of Genes and GenomesGestational diabetes mellitustype 1 diabetes mellitusType 2 diabetesNon-obese diabeticCompeting endogenous RNAreverse transcriptionPolycystic ovary syndromeceRNALong noncoding RNAInsulin-like factor 3Insulin resistanceMicroRNAMiRNAGene ontologyHematoxylin and Eosinfollicle-stimulating hormoneluteinizing hormoneFSHquantitative real-time polymerase chain reactiondeath-associated protein kinase 1Androgen Receptorperoxisome proliferator-activated receptor
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Authors
Lu-lu Fu, Ying Xu, Dan-dan Li, Xiao-wei Dai, Xin Xu, Jing-shun Zhang, Hao Ming, Xue-ying Zhang, Guo-qing Zhang, Ya-lan Ma, Lian-wen Zheng,