Kisspeptin对谭羊卵巢颗粒细胞miRNA-mRNA的综合分析。

Tianshu Dai, Xiaolong Kang, Chaoyun Yang, Shan Mei, Shihao Wei, Xingru Guo, Ziming Ma, Yuangang Shi, Yuankui Chu, Xingang Dan
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引用次数: 1

摘要

Kisspeptin是一种由kiss-1基因编码的肽激素,负责调节动物繁殖。我们的研究发现,kisspeptin可以调节Tan羊卵巢颗粒细胞中类固醇激素的产生,促进细胞增殖,但其作用机制尚不完全清楚。我们推测kisspeptin可能通过介导颗粒细胞中特异性miRNA和mRNA的表达来促进类固醇激素的产生和细胞增殖。因此,用kisspeptin处理颗粒细胞后,提取细胞RNA构建cDNA文库,并进行miRNA-mRNA测序。结果显示,共鉴定出1303个表达基因和605个表达mirna。此外,还发现了8个差异表达的mirna,它们的靶基因在孕激素合成/代谢、激素生物合成、排卵周期和类固醇代谢调节中显著富集。同时,mRNA在类固醇生物合成、IL-17信号通路和GnRH信号通路中显著富集。对miRNA-mRNA的整合分析发现,具有显著差异的oar-let-7b靶向8个基因,其中EGR1(早期生长反应-1)可能在调节颗粒细胞功能中发挥重要作用,miR-10a通过靶向HNRNPD调控脂质代谢和类固醇激素合成。此外,PPI分析揭示了颗粒细胞中非miRNA靶点但对其他生物过程至关重要的基因,这意味着kisspeptin也可能通过这些途径间接调节颗粒细胞功能。本研究结果可能有助于了解kisspeptin调控谭羊卵巢颗粒细胞类固醇激素分泌、细胞增殖等生理功能的分子机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Integrative Analysis of miRNA-mRNA in Ovarian Granulosa Cells Treated with Kisspeptin in Tan Sheep.

Integrative Analysis of miRNA-mRNA in Ovarian Granulosa Cells Treated with Kisspeptin in Tan Sheep.

Integrative Analysis of miRNA-mRNA in Ovarian Granulosa Cells Treated with Kisspeptin in Tan Sheep.

Integrative Analysis of miRNA-mRNA in Ovarian Granulosa Cells Treated with Kisspeptin in Tan Sheep.

Kisspeptin is a peptide hormone encoded by the kiss-1 gene that regulates animal reproduction. Our studies revealed that kisspeptin can regulate steroid hormone production and promote cell proliferation in ovarian granulosa cells of Tan sheep, but the mechanism has not yet been fully understood. We speculated that kisspeptin might promote steroid hormone production and cell proliferation by mediating the expression of specific miRNA and mRNA in granulosa cells. Accordingly, after granulosa cells were treated with kisspeptin, the RNA of cells was extracted to construct a cDNA library, and miRNA-mRNA sequencing was performed. Results showed that 1303 expressed genes and 605 expressed miRNAs were identified. Furthermore, eight differentially expressed miRNAs were found, and their target genes were significantly enriched in progesterone synthesis/metabolism, hormone biosynthesis, ovulation cycle, and steroid metabolism regulation. Meanwhile, mRNA was significantly enriched in steroid biosynthesis, IL-17 signaling pathway, and GnRH signaling pathway. Integrative analysis of miRNA-mRNA revealed that the significantly different oar-let-7b targets eight genes, of which EGR1 (early growth response-1) might play a significant role in regulating the function of granulosa cells, and miR-10a regulates lipid metabolism and steroid hormone synthesis by targeting HNRNPD. Additionally, PPI analysis revealed genes that are not miRNA targets but crucial to other biological processes in granulosa cells, implying that kisspeptin may also indirectly regulate granulosa cell function by these pathways. The findings of this work may help understand the molecular mechanism of kisspeptin regulating steroid hormone secretion, cell proliferation, and other physiological functions in ovarian granulosa cells of Tan sheep.

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