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MicroRNA Expression Profile in Bovine Granulosa Cells of Preovulatory Dominant and Subordinate Follicles during the Late Follicular Phase of the Estrous Cycle

机译:在发情周期的晚期卵泡期排卵前优势和次级卵泡的牛颗粒细胞中的MicroRNA表达谱。

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摘要

In bovine, ovarian follicles grow in a wave-like fashion with commonly 2 or 3 follicular waves emerging per estrous cycle. The dominant follicle of the follicular wave which coincides with the LH-surge becomes ovulatory, leaving the subordinate follicles to undergo atresia. These physiological processes are controlled by timely and spatially expressed genes and gene products, which in turn are regulated by post-transcriptional regulators. MicroRNAs, a class of short non-coding RNA molecules, are one of the important posttranscriptional regulators of genes associated with various cellular processes. Here we investigated the expression pattern of miRNAs in granulosa cells of bovine preovulatory dominant and subordinate follicles during the late follicular phase of bovine estrous cycle using Illumina miRNA deep sequencing. In addition to 11 putative novel miRNAs, a total of 315 and 323 known miRNAs were detected in preovulatory dominant and subordinate follicles, respectively. Moreover, in comparison with the subordinate follicles, a total of 64 miRNAs were found to be differentially expressed in preovulatory dominant follicles, of which 34 miRNAs including the miR-132 and miR-183 clusters were significantly enriched, and 30 miRNAs including the miR-17-92 cluster, bta-miR-409a and bta-miR-378 were significantly down regulated in preovulatory dominant follicles. In-silico pathway analysis revealed that canonical pathways related to oncogenesis, cell adhesion, cell proliferation, apoptosis and metabolism were significantly enriched by the predicted target genes of differentially expressed miRNAs. Furthermore, Luciferase reporter assay analysis showed that one of the differentially regulated miRNAs, the miR-183 cluster miRNAs, were validated to target the 3´-UTR of FOXO1 gene. Moreover FOXO1 was highly enriched in granulosa cells of subordinate follicles in comparison with the preovulatory dominant follicles demonstrating reciprocal expression pattern with miR-183 cluster miRNAs. In conclusion, the presence of distinct sets of miRNAs in granulosa cells of preovulatory dominant and subordinate follicles supports the potential role of miRNAs in post-transcriptional regulation of genes involved in bovine follicular development during the late follicular phase of the estrous cycle.
机译:在牛中,卵巢卵泡以波状方式生长,每个发情周期通常会出现2或3个卵泡波。与LH激增相吻合的卵泡波的优势卵泡排卵,从而使下级卵泡闭锁。这些生理过程受及时和空间表达的基因和基因产物的控制,而这些基因和基因产物又受转录后调节剂的调控。 MicroRNA是一类短的非编码RNA分子,是与各种细胞过程相关的重要的转录后调控因子之一。在这里,我们使用Illumina miRNA深度测序研究了牛发情周期的卵泡后期卵泡期排卵前期主导和下级卵泡颗粒细胞中miRNA的表达模式。除了11种推定的新型miRNA,在排卵前优势卵泡和下级卵泡中分别检测到315种和323种已知miRNA。此外,与下级卵泡相比,排卵前优势卵泡中共有64个miRNA差异表达,其中包括miR-132和miR-183簇的34个miRNA明显富集,包括miR- 17-92簇,bta-miR-409a和bta-miR-378在排卵前优势卵泡中显着下调。硅内途径分析表明,差异表达的miRNA的预测靶基因显着丰富了与肿瘤发生,细胞粘附,细胞增殖,凋亡和代谢相关的规范途径。此外,萤光素酶报告基因分析表明,一种差异调节的miRNA,即miR-183簇miRNA,经验证可靶向FOXO1基因的3′-UTR。此外,与排卵前占优势的卵泡相比,FOXO1在次级卵泡的颗粒细胞中高度富集,这证明了miR-183簇miRNA的相互表达模式。总之,排卵前占主导地位的卵泡和下属卵泡的颗粒细胞中存在不同组的miRNA,支持了miRNA在发情周期后期卵泡期转录相关调控牛卵泡发育的基因中的潜在作用。

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