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参与C2C12细胞成肌分化的差异表达基因和分子途径的转录组分析

Transcriptome Analysis of Differentially Expressed Genes and Molecular Pathways Involved in C2C12 Cells Myogenic Differentiation.

作者信息

Tao Lingjian, Huang Weixing, Li Zhiyan, Wang Wei, Lei Xinhuan, Chen Jiangjie, Song Xiaoting, Lu Fangying, Fan Shaohua, Zhang Liwei

机构信息

Orthopedic Department, Taizhou Hospital of Zhejiang Province, Zhejiang University, Ximen Street 150#, Taizhou, 317000, Zhejiang, China.

General Surgical Department, Taizhou Hospital of Zhejiang Province, Zhejiang University, Taizhou, 317000, China.

出版信息

Mol Biotechnol. 2024 Sep 18. doi: 10.1007/s12033-024-01259-7.

Abstract

Muscles are essential tissues responsible for movement, stability, and metabolism, playing a crucial role in human health and well-being. A comprehensive understanding of muscle differentiation processes is imperative for combating muscle degenerative diseases such as muscular dystrophy. In this study, C2C12 cells were induced to differentiate into myotubes in vitro. Phenotypic changes were observed utilizing Gimsa and immunofluorescent staining techniques. RNA sequencing was conducted at distinct time points (0, 2, 4, and 7 days) during the differentiation process. To elucidate the underlying molecular mechanisms, differential expression analysis, gene ontology (GO), Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis, and Gene Set Enrichment Analysis (GSEA) were performed. Soft clustering of time series gene expression was employed to establish the expression patterns of differentially expressed genes (DEGs) at various time points during myogenesis. Additionally, quantitative reverse transcription PCR was utilized to validate gene expression from RNA-seq data at the mRNA level. Throughout the myogenic differentiation of C2C12 cells, notable morphological changes were observed, with myoblasts forming multinucleated myotubes by day 4 and plump elongated structures by day 7. Gene expression analysis revealed a substantial increase in DEGs as differentiation progressed, with a significant rise in DEGs from day 0 to day 7. Enrichment analysis highlighted key biological processes and pathways involved, including signal transduction and immune system processes, as well as pathways like chemokine and calcium signaling. Noise-robust soft clustering identified distinct temporal gene expression patterns, categorizing genes into upregulated, downregulated, and biphasic response clusters. The MYH family exhibited diverse expression changes, with Myh3, Myh13, Myh6, Myh7, Myh2, Myh8, Myh14, Myh7b, Myh1, and Myh4 upregulated, Myh10, Myh9, and Myh12 downregulated. Key transcription factors displayed dynamic expression patterns, which was crucial for the regulation of myoblast differentiation. A comprehensive and dynamic transcriptomic analysis of the C2C12 myoblast differentiation process has significantly enhanced our understanding of the key genes and biological pathways involved in myogenesis.

摘要

肌肉是负责运动、稳定和新陈代谢的重要组织,在人类健康和福祉中发挥着关键作用。全面了解肌肉分化过程对于对抗诸如肌肉萎缩症等肌肉退行性疾病至关重要。在本研究中,C2C12细胞在体外被诱导分化为肌管。利用吉姆萨染色和免疫荧光染色技术观察表型变化。在分化过程的不同时间点(0、2、4和7天)进行RNA测序。为了阐明潜在的分子机制,进行了差异表达分析、基因本体(GO)、京都基因与基因组百科全书(KEGG)通路分析以及基因集富集分析(GSEA)。采用时间序列基因表达的软聚类来建立成肌过程中不同时间点差异表达基因(DEG)的表达模式。此外,利用定量逆转录PCR在mRNA水平验证RNA-seq数据中的基因表达。在C2C12细胞的成肌分化过程中,观察到显著的形态变化,成肌细胞在第4天形成多核肌管,在第7天形成饱满的细长结构。基因表达分析显示,随着分化的进行,DEG大量增加,从第0天到第7天DEG显著上升。富集分析突出了所涉及的关键生物学过程和通路,包括信号转导和免疫系统过程,以及趋化因子和钙信号等通路。噪声稳健软聚类确定了不同的时间基因表达模式,将基因分为上调、下调和双相反应簇。MYH家族表现出多样的表达变化,Myh3、Myh13、Myh6、Myh7、Myh2、Myh8、Myh14、Myh7b、Myh1和Myh4上调,Myh10、Myh9和Myh12下调。关键转录因子显示出动态表达模式,这对于成肌细胞分化的调控至关重要。对C2C12成肌细胞分化过程进行全面而动态的转录组分析,显著增强了我们对成肌过程中关键基因和生物学通路的理解。

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