Farm Animal Genetic Resources Exploration and Innovation Key Laboratory of Sichuan Province, Sichuan Agricultural University, Chengdu 611130, PR China; Key Laboratory of Livestock and Poultry Multi-omics, Ministry of Agriculture and Rural Affairs, Institute of Animal Genetics and Breeding, Sichuan Agricultural University, Chengdu 611130, PR China.
Farm Animal Genetic Resources Exploration and Innovation Key Laboratory of Sichuan Province, Sichuan Agricultural University, Chengdu 611130, PR China.
Poult Sci. 2023 Apr;102(4):102546. doi: 10.1016/j.psj.2023.102546. Epub 2023 Feb 1.
Although miR-27b-3p has been evidenced to regulate the proliferation, apoptosis, and differentiation of a variety of mammalian cell types, its actions and mechanisms on ovarian cell steroidogenesis remains largely unknown in both mammalian and avian species. In this study, we aimed to determine the expression profiles of miR-27b-3p in granulosa cell layers during goose ovarian follicle development and to reveal its actions on estrogen (E) secretion of goose granulosa cells as well as the underlying regulatory mechanisms. It was observed that miR-27b-3p was ubiquitously expressed throughout follicle development but exhibited much higher levels in hierarchical- than in prehierarchical follicles. In cultured granulosa cells from the fourth through second largest preovulatory (F4-F2) follicles of goose, up- and downregulation of miR-27b-3p by using its mimic and inhibitor significantly decreased and increased E secretion, respectively. Meanwhile, the mRNA levels of STAR and CYP19A1 were significantly reduced while those of CYP11A1 and 3βHSD were elevated in the mimic-transfected granulosa cells. By comparison, downregulation of miR-27b-3p enhanced the mRNA levels of STAR but had no significant effects on those of CYP19A1, CYP11A1, and 3βHSD. Results from bioinformatic prediction and luciferase reporter assay demonstrated that CYP1B1 was a downstream target of miR-27b-3p. Although the siRNA-mediated downregulation of CYP1B1 did not significantly change E secretion by goose granulosa cells, it reduced the mRNA levels of STAR and CYP19A1 as well as those of LKB1 and AMPKα, which are involved in the AMPK signaling pathway. Taken together, these data suggest that miR-27b-3p plays an inhibitory role in E secretion by goose F4-F2 granulosa cells, at least in part, by targeting CYP1B1 through the AMPK signaling pathway.
虽然 miR-27b-3p 已被证明可以调节多种哺乳动物细胞类型的增殖、凋亡和分化,但它在哺乳动物和禽类中的卵巢细胞类固醇生成中的作用和机制在很大程度上仍然未知。在这项研究中,我们旨在确定 miR-27b-3p 在鹅卵巢卵泡发育过程中在颗粒细胞层中的表达谱,并揭示其对鹅颗粒细胞雌激素 (E) 分泌的作用以及潜在的调节机制。结果表明,miR-27b-3p 在整个卵泡发育过程中广泛表达,但在分级卵泡中表达水平高于前分级卵泡。在鹅的第四至第二大预排卵 (F4-F2) 卵泡的培养颗粒细胞中,使用其模拟物和抑制剂上调和下调 miR-27b-3p 分别显著减少和增加了 E 的分泌。同时,在转染 miR-27b-3p 模拟物的颗粒细胞中,STAR 和 CYP19A1 的 mRNA 水平显著降低,而 CYP11A1 和 3βHSD 的 mRNA 水平升高。相比之下,下调 miR-27b-3p 增强了 STAR 的 mRNA 水平,但对 CYP19A1、CYP11A1 和 3βHSD 的 mRNA 水平没有显著影响。生物信息学预测和荧光素酶报告基因测定的结果表明,CYP1B1 是 miR-27b-3p 的下游靶标。虽然 CYP1B1 的 siRNA 介导下调并没有显著改变鹅颗粒细胞的 E 分泌,但它降低了 STAR 和 CYP19A1 的 mRNA 水平,以及参与 AMPK 信号通路的 LKB1 和 AMPKα 的 mRNA 水平。综上所述,这些数据表明,miR-27b-3p 通过 AMPK 信号通路靶向 CYP1B1 在至少部分程度上抑制鹅 F4-F2 颗粒细胞的 E 分泌。