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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Comprehensive analysis of lncRNAs and mRNAs with associated co-expression and ceRNA networks in C2C12 myoblasts and myotubes
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Comprehensive analysis of lncRNAs and mRNAs with associated co-expression and ceRNA networks in C2C12 myoblasts and myotubes

机译:在C2C12肌细胞和MyOtubes中综合分析LNCRNA和MRNA与相关联的CO-表达和CERNA网络

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Abstract Long non-coding RNAs (lncRNAs) are emerging as important regulators in the modulation of muscle development and muscle-related diseases. To explore potential regulators of muscle differentiation, we determined the expression profiles of lncRNAs and mRNAs in C2C12 mouse myoblast cell line using microarray analysis. Gene ontology and Kyoto Encyclopedia of Genes and Genomes pathway enrichment analyses were performed to explore their function. We also constructed co-expression, cis/trans-regulation, and competing endogenous RNA (ceRNA) networks with bioinformatics methods. We found that 3067 lncRNAs and 3235 mRNAs were differentially regulated (fold change ≥2.0). Bioinformatics analysis indicated that the principal functions of the transcripts were related to muscle structure development and morphogenesis. Co-expression analysis showed 261 co-expression relationships between 233 lncRNAs and 10 mRNAs, and nine lncRNAs interacted with myog and MEF2C collectively. Cis/trans-regulation prediction revealed that lncRNA Myh6 could be a valuable gene via cis-regulation, and lncRNAs such as 2310043L19Ris, V00821, and AK139352 may participate in particular pathways regulated by transcription factors, including myog, myod1, and foxo1. The myog-specific ceRNA network covered 10 lncRNAs, 378 miRNAs, and 1960 edges. The upregulated lncRNAs Filip1, Myl1, and 2310043L19Rik may promote myog expression by acting as ceRNAs. Our results offer a new perspective on the modulation of lncRNAs in muscle differentiation. Highlights ? Co-expression revealed the differentially expressed lncRNA-mRNA that had some similar properties to muscle development. ? Cis/trans-regulation prediction might provide new clue for elucidating the underlying mechanism of muscle differentiation. ? Myog-specific ceRNA network was first reported during myogenic differentiation.
机译:摘要摘要长期非编码RNA(LNCRNA)在肌肉发育和肌肉有关的疾病调制中是重要的调节因素。为了探索肌肉分化的潜在调节因子,我们使用微阵列分析确定了C2C12小鼠肌细胞线中LNCRNA和MRNA的表达谱。进行基因本体和京都基因和基因组途径富集分析进行探索其功能。我们还构建了具有生物信息学方法的共表达,CIS / Trans-Crulation和竞争内源性RNA(Cerna)网络。我们发现,3067 LNCRNA和3235 mRNA差异调节(折叠变化≥2.0)。生物信息学分析表明,转录物的主要功能与肌肉结构发育和形态发生有关。共表达分析显示233克朗中和10mRNA之间的261个共表达关系,以及共同与MYOG和MEF2C相互作用的九个LNCRNA。 CIS / Trans-Crulation预测显示,LNCRNA MyH6可以是通过顺式调节的有价值的基因,并且LNCRNA如2310043L19RIS,V00821和AK139352可以参与由转录因子调节的特定途径,包括Myog,MyoD1和FoxO1。 Myog特定的Cerna网络涵盖了10个LNCRNA,378 MiRNA和1960年的边缘。上调的LNCRNA FILIP1,MYL1和2310043L19RIK可以通过作为CERNAS来促进MYOG表达。我们的结果提供了在肌肉分化中调制LNCRNA的新视角。强调 ?共表达揭示了差异表达的LNCRNA-mRNA,其对肌肉发育具有一些类似的性质。还CIS / Trans-Crulation预测可能提供新的线索,以阐明肌肉分化的潜在机制。还在肌遗传分化期间首次报告Myog特异性Cerna网络。

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