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2型糖尿病和肥胖在人类心肌细胞中诱导相似的转录重编程。

Type 2 diabetes and obesity induce similar transcriptional reprogramming in human myocytes.

作者信息

Väremo Leif, Henriksen Tora Ida, Scheele Camilla, Broholm Christa, Pedersen Maria, Uhlén Mathias, Pedersen Bente Klarlund, Nielsen Jens

机构信息

Department of Biology and Biological Engineering, Chalmers University of Technology, 41296, Gothenburg, Sweden.

Centre of Inflammation and Metabolism and Centre for Physical Activity Research, Rigshospitalet, University of Copenhagen, 2100, Copenhagen Ø, Denmark.

出版信息

Genome Med. 2017 May 25;9(1):47. doi: 10.1186/s13073-017-0432-2.

Abstract

BACKGROUND

Skeletal muscle is one of the primary tissues involved in the development of type 2 diabetes (T2D). The close association between obesity and T2D makes it difficult to isolate specific effects attributed to the disease alone. Therefore, here we set out to identify and characterize intrinsic properties of myocytes, associated independently with T2D or obesity.

METHODS

We generated and analyzed RNA-seq data from primary differentiated myotubes from 24 human subjects, using a factorial design (healthy/T2D and non-obese/obese), to determine the influence of each specific factor on genome-wide transcription. This setup enabled us to identify intrinsic properties, originating from muscle precursor cells and retained in the corresponding myocytes. Bioinformatic and statistical methods, including differential expression analysis, gene-set analysis, and metabolic network analysis, were used to characterize the different myocytes.

RESULTS

We found that the transcriptional program associated with obesity alone was strikingly similar to that induced specifically by T2D. We identified a candidate epigenetic mechanism, H3K27me3 histone methylation, mediating these transcriptional signatures. T2D and obesity were independently associated with dysregulated myogenesis, down-regulated muscle function, and up-regulation of inflammation and extracellular matrix components. Metabolic network analysis identified that in T2D but not obesity a specific metabolite subnetwork involved in sphingolipid metabolism was transcriptionally regulated.

CONCLUSIONS

Our findings identify inherent characteristics in myocytes, as a memory of the in vivo phenotype, without the influence from a diabetic or obese extracellular environment, highlighting their importance in the development of T2D.

摘要

背景

骨骼肌是参与2型糖尿病(T2D)发生发展的主要组织之一。肥胖与T2D之间的密切关联使得难以单独分离出该疾病所特有的效应。因此,我们在此着手鉴定并表征与T2D或肥胖独立相关的心肌细胞内在特性。

方法

我们采用析因设计(健康/T2D以及非肥胖/肥胖),生成并分析了来自24名人类受试者原代分化肌管的RNA测序数据,以确定每个特定因素对全基因组转录的影响。这种设置使我们能够鉴定源自肌肉前体细胞并保留在相应心肌细胞中的内在特性。运用生物信息学和统计学方法,包括差异表达分析、基因集分析和代谢网络分析,来表征不同的心肌细胞。

结果

我们发现仅与肥胖相关的转录程序与T2D特异性诱导的转录程序惊人地相似。我们鉴定出一种候选表观遗传机制,即H3K27me3组蛋白甲基化,介导这些转录特征。T2D和肥胖分别与肌生成失调、肌肉功能下调以及炎症和细胞外基质成分上调相关。代谢网络分析表明,在T2D而非肥胖中,参与鞘脂代谢的特定代谢物子网受到转录调控。

结论

我们的研究结果鉴定出心肌细胞的固有特征,作为体内表型的一种记忆,不受糖尿病或肥胖细胞外环境的影响,突出了它们在T2D发生发展中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5cd/5444103/e9e9a0770ceb/13073_2017_432_Fig1_HTML.jpg

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