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MicroRNA roles in signalling during lactation: an insight from differential expression time course and pathway analyses of deep sequence data

机译:MicroRNA在哺乳期信号传导中的作用:差异表达时程和深度序列数据途径分析的真知灼见

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摘要

The study examined microRNA (miRNA) expression and regulatory patterns during an entire bovine lactation cycle. Total RNA from milk fat samples collected at the lactogenesis (LAC, day1 [D1] and D7), galactopoiesis (GAL, D30, D70, D130, D170 and D230) and involution (INV, D290 and when milk production dropped to 5 kg/day) stages from 9 cows was used for miRNA sequencing. A total of 475 known and 238 novel miRNAs were identified. Fifteen abundantly expressed miRNAs across lactation stages play regulatory roles in basic metabolic, cellular and immunological functions. About 344, 366 and 209 miRNAs were significantly differentially expressed (DE) between GAL and LAC, INV and GAL, and INV and LAC stages, respectively. MiR-29b/miR-363 and miR-874/miR-6254 are important mediators for transition signals from LAC to GAL and from GAL to INV, respectively. Moreover, 58 miRNAs were dynamically DE in all lactation stages and 19 miRNAs were significantly time-dependently DE throughout lactation. Relevant signalling pathways for transition between lactation stages are involved in apoptosis (PTEN and SAPK/JNK), intracellular signalling (protein kinase A, TGF-β and ERK5), cell cycle regulation (STAT3), cytokines, hormones and growth factors (prolactin, growth hormone and glucocorticoid receptor). Overall, our data suggest diverse, temporal and physiological signal-dependent regulatory and mediator functions for miRNAs during lactation.
机译:该研究在整个牛泌乳周期中检查了microRNA(miRNA)的表达和调控模式。在泌乳期(LAC,第1天[D1]和D7),乳腺造血术(GAL,D30,D70,D130,D170和D230)和内推(INV,D290,以及当牛奶产量降至5kg / kg时)收集的乳脂样品中的总RNA。第9天(9天)的阶段用于miRNA测序。总共鉴定出475种已知的miRNA和238种新颖的miRNA。十五个在泌乳阶段大量表达的miRNA在基本的代谢,细胞和免疫功能中起调节作用。 GAL和LAC,INV和GAL以及INV和LAC阶段之间分别分别有约344、366和209个miRNA显着差异表达(DE)。 MiR-29b / miR-363和miR-874 / miR-6254分别是从LAC到GAL和从GAL到INV的过渡信号的重要介体。此外,在整个泌乳阶段,有58个miRNA是动态DE,而在整个泌乳过程中,有19个miRNA是显着时间依赖性的DE。泌乳阶段之间过渡的相关信号通路涉及细胞凋亡(PTEN和SAPK / JNK),细胞内信号传导(蛋白激酶A,TGF-β和ERK5),细胞周期调节(STAT3),细胞因子,激素和生长因子(催乳素,生长激素和糖皮质激素受体)。总体而言,我们的数据表明,泌乳期miRNA具有多种,时间和生理信号依赖性的调节和介体功能。

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