Department of Molecular and Integrative Physiology, University of Michigan, 1301 E. Catherine St., Ann Arbor, MI 48109-5622, USA.
Am J Physiol Endocrinol Metab. 2010 Aug;299(2):E198-206. doi: 10.1152/ajpendo.00179.2010. Epub 2010 May 18.
In this study, we explored the roles of microRNAs in adipocyte differentiation and metabolism. We first knocked down Argonaute2 (Ago2), a key enzyme in the processing of micro-RNAs (miRNAs), to investigate a potential role for miRNAs in adipocyte differentiation and/or metabolism. Although we did not observe dramatic differences in adipogenesis between Ago2 knock-down and control 3T3-L1 cells, incorporation of [(14)C]glucose or acetate into triacylglycerol, and steady-state levels of triacyglycerol were all reduced, suggesting a role for miRNAs in adipocyte metabolism. To study roles of specific miRNAs in adipocyte biology, we screened for miRNAs that are differentially expressed between preadipocytes and adipocytes for the 3T3-L1 and ST2 cell lines. Distinct subsets of miRNAs decline or increase during adipocyte conversion, whereas most miRNAs are not regulated. One locus encoding two miRNAs, 378/378*, contained within the intron of PGC-1beta is highly induced during adipogenesis. When overexpressed in ST2 mesenchymal precursor cells, miRNA378/378* increases the size of lipid droplets and incorporation of [(14)C]acetate into triacylglycerol. Although protein and mRNA expression levels of C/EBPalpha, C/EBPbeta, C/EBPdelta, and PPARgamma1 are unchanged, microarray and quantitative RT-PCR analyses indicate that a set of lipogenic genes are upregulated, perhaps due to increased expression of PPARgamma2. Knock-down of miRNA378 and/or miRNA378* decreases accumulation of triacylglycerol. Interestingly, we made the unexpected finding that miRNA378/378* specifically increases transcriptional activity of C/EBPalpha and C/EBPbeta on adipocyte gene promoters.
在这项研究中,我们探讨了 microRNAs 在脂肪细胞分化和代谢中的作用。我们首先敲低 Argonaute2(AGO2),一种 microRNAs(miRNAs)加工的关键酶,以研究 miRNAs 在脂肪细胞分化和/或代谢中的潜在作用。虽然我们没有观察到 Ago2 敲低和对照 3T3-L1 细胞之间脂肪生成有明显差异,但 [(14)C]葡萄糖或乙酸掺入三酰基甘油以及三酰基甘油的稳态水平均降低,表明 miRNAs 在脂肪细胞代谢中发挥作用。为了研究特定 miRNAs 在脂肪细胞生物学中的作用,我们筛选了在 3T3-L1 和 ST2 细胞系中前脂肪细胞和脂肪细胞之间差异表达的 miRNAs。在脂肪细胞转化过程中,不同亚群的 miRNAs 下降或增加,而大多数 miRNAs 不受调节。一个编码两个 miRNAs(378/378*)的基因座,位于 PGC-1beta 内含子中,在脂肪生成过程中高度诱导。在 ST2 间充质前体细胞中过表达时,miRNA378/378增加了脂质滴的大小,并将 [(14)C]乙酸掺入三酰基甘油。尽管 C/EBPalpha、C/EBPbeta、C/EBPdelta 和 PPARgamma1 的蛋白和 mRNA 表达水平没有改变,但微阵列和定量 RT-PCR 分析表明一组脂生成基因上调,可能是由于 PPARgamma2 的表达增加。敲低 miRNA378 和/或 miRNA378减少三酰基甘油的积累。有趣的是,我们发现了一个意外的发现,miRNA378/378*特异性增加了 C/EBPalpha 和 C/EBPbeta 在脂肪细胞基因启动子上的转录活性。