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整合分析翻译组和转录组揭示了 microRNAs 调控棕色和白色脂肪组织的重要翻译调控。

Integrative analyses of translatome and transcriptome reveal important translational controls in brown and white adipose regulated by microRNAs.

机构信息

Cardiovascular and Metabolic Disorders Program, Duke-NUS Graduate Medical School, 8 College Road, Singapore, 169857, Singapore.

School of Laboratory Medicine and Life Science, Wenzhou Medical University, Wenzhou, Zhejiang, 325035, China.

出版信息

Sci Rep. 2017 Jul 18;7(1):5681. doi: 10.1038/s41598-017-06077-3.

Abstract

The epidemic of obesity and diabetes has markedly spurred the research interest in adipocyte biology. Brown adipocytes are specialized for energy expenditure and of therapeutic interest for treatment of metabolic diseases, but how brown adipocytes are distinguished from white adipocytes at the level of translational regulation remains poorly understood. To systemically determine the translational control of gene expression in adipose tissue, we performed ribosome profiling and RNA-seq in parallel to depict the translatome and transcriptome changes during primary brown and white adipogenesis, and between brown and white adipose tissue. The most prominent layer of translational regulation was the increased translation efficiency of genes encoding mitochondria components in brown adipocytes relative to white. Systemic analysis of the regulatory interactions between microRNAs and their targets revealed that microRNAs were more active in repressing targets' mRNA abundance and translation in brown fat. Together, our data comprehensively delineated a landscape integrating transcriptome and translatome in adipose tissue.

摘要

肥胖症和糖尿病的流行显著激发了人们对脂肪细胞生物学的研究兴趣。棕色脂肪细胞专门用于消耗能量,对于治疗代谢疾病具有治疗意义,但棕色脂肪细胞在翻译调控水平上如何与白色脂肪细胞区分开来,人们仍知之甚少。为了系统地确定脂肪组织中转录后基因表达的调控,我们平行进行核糖体分析和 RNA 测序,以描绘在原代棕色和白色脂肪生成过程中以及棕色和白色脂肪组织之间的转录组和翻译组变化。翻译调控最显著的一层是,与白色脂肪细胞相比,编码线粒体成分的基因的翻译效率在棕色脂肪细胞中增加。对 microRNA 与其靶标之间的调控相互作用进行系统分析表明,microRNA 在抑制棕色脂肪中靶标 mRNA 丰度和翻译方面更为活跃。总的来说,我们的数据全面描绘了脂肪组织中转录组和翻译组的图谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10f0/5515893/b8d4ccc19a52/41598_2017_6077_Fig1_HTML.jpg

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