DNA甲基化双相调控3T3-L1前脂肪细胞分化。

Q Biochemistry, Genetics and Molecular Biology
Molecular endocrinology Pub Date : 2016-06-01 Epub Date: 2016-05-04 DOI:10.1210/me.2015-1135
Xiaosong Yang, Rui Wu, Weiguang Shan, Liqing Yu, Bingzhong Xue, Hang Shi
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引用次数: 31

摘要

更好地了解脂肪形成的机制可能为肥胖的治疗提供新的治疗靶点。大多数关于脂肪形成机制的研究都集中在高度调控的转录途径上;对这一过程的表观遗传机制知之甚少。在这里,我们确定了DNA甲基化在分化早期和晚期调节3T3-L1脂肪形成中的作用。我们发现在3T3-L1分化早期用5-aza-2′-脱氧胞苷(5-aza-dC)抑制DNA甲基化可显著抑制脂肪生成。5-aza-dC对脂肪形成的抑制与Wnt10a(一种抗脂肪因子)的上调和Wnt10a启动子甲基化的下调有关。相反,在分化后期用5-aza-dC抑制DNA甲基化可以增强脂肪生成程序。5-aza-dC对脂肪形成的不同影响通过DNA甲基转移酶1功能的获得或丧失得到了证实。我们进一步探讨了在分化后期通过抑制DNA甲基化来促进脂肪生成的分子机制。Srebp1c启动子富含CpG位点。染色质免疫沉淀试验显示DNA甲基转移酶1结合到Srebp1c启动子的甲基化区域。焦磷酸测序分析显示,Srebp1c启动子关键顺式元件的DNA甲基化在脂肪形成中下调。此外,荧光素酶报告基因检测显示,与完全甲基化的启动子相比,未甲基化的启动子显著上调了Srebp1c启动子的活性。因此,DNA甲基化似乎在脂肪形成中发挥双相调节作用,在3T3-L1前脂肪细胞分化的早期促进分化,而在晚期抑制脂肪形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

DNA Methylation Biphasically Regulates 3T3-L1 Preadipocyte Differentiation.

DNA Methylation Biphasically Regulates 3T3-L1 Preadipocyte Differentiation.

DNA Methylation Biphasically Regulates 3T3-L1 Preadipocyte Differentiation.

DNA Methylation Biphasically Regulates 3T3-L1 Preadipocyte Differentiation.

Better understanding the mechanisms underlying adipogenesis may provide novel therapeutic targets in the treatment of obesity. Most studies investigating the mechanisms underlying adipogenesis focus on highly regulated transcriptional pathways; little is known about the epigenetic mechanisms in this process. Here, we determined the role of DNA methylation in regulating 3T3-L1 adipogenesis in early and late stage of differentiation. We found that inhibiting DNA methylation pharmacologically by 5-aza-2'-deoxycytidine (5-aza-dC) at early stage of 3T3-L1 differentiation markedly suppressed adipogenesis. This inhibition of adipogenesis by 5-aza-dC was associated with up-regulation of Wnt10a, an antiadipogenic factor, and down-regulation of Wnt10a promoter methylation. In contrast, inhibiting DNA methylation by 5-aza-dC at late stage of differentiation enhanced the lipogenic program. The differential effects of 5-aza-dC on adipogenesis were confirmed by gain or loss of function of DNA methyltransferase 1 using genetic approaches. We further explored the molecular mechanism underlying the enhanced lipogenesis by inhibition of DNA methylation at late stage of differentiation. The Srebp1c promoter is enriched with CpG sites. Chromatin immunoprecipitation assays showed that DNA methyltransferase 1 bound to the methylation region at the Srebp1c promoter. Pyrosequencing analysis revealed that the DNA methylation at the key cis-elements of the Srebp1c promoter was down-regulated in adipogenesis. Further, luciferase reporter assays showed that the Srebp1c promoter activity was dramatically up-regulated by the unmethylated promoter compared with the fully methylated promoter. Thus DNA methylation appears to exert a biphasic regulatory role in adipogenesis, promoting differentiation at early stage while inhibiting lipogenesis at late stage of 3T3-L1 preadipocyte differentiation.

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来源期刊
Molecular endocrinology
Molecular endocrinology 医学-内分泌学与代谢
CiteScore
3.49
自引率
0.00%
发文量
0
审稿时长
12 months
期刊介绍: Molecular Endocrinology provides a forum for papers devoted to describing molecular mechanisms by which hormones and related compounds regulate function. It has quickly achieved a reputation as a high visibility journal with very rapid communication of cutting edge science: the average turnaround time is 28 days from manuscript receipt to first decision, and accepted manuscripts are published online within a week through Rapid Electronic Publication. In the 2008 Journal Citation Report, Molecular Endocrinology is ranked 16th out of 93 journals in the Endocrinology and Metabolism category, with an Impact Factor of 5.389.
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