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DUX4 差异调控人横纹肌肉瘤和小鼠 C2C12 细胞的转录组。

DUX4 differentially regulates transcriptomes of human rhabdomyosarcoma and mouse C2C12 cells.

机构信息

Department of Molecular Medicine, George Washington University, Washington DC, United States of America.

出版信息

PLoS One. 2013 May 22;8(5):e64691. doi: 10.1371/journal.pone.0064691. Print 2013.

Abstract

Facioscapulohumeral muscular dystrophy (FSHD) is linked to the deletion of the D4Z4 arrays at chromosome 4q35. Recent studies suggested that aberrant expression of double homeobox 4 (DUX4) from the last D4Z4 repeat causes FSHD. The aim of this study is to determine transcriptomic responses to ectopically expressed DUX4 in human and mouse cells of muscle lineage. We expression profiled human rhabdomyosarcoma (RD) cells and mouse C2C12 cells transfected with expression vectors of DUX4 using the Affymetrix Human Genome U133 Plus 2.0 Arrays and Mouse Genome 430 2.0 Arrays, respectively. A total of 2267 and 150 transcripts were identified to be differentially expressed in the RD and C2C12 cells, respectively. Amongst the transcripts differentially expressed in the RD cells, MYOD and MYOG (2 fold, p<0.05), and six MYOD downstream targets were up-regulated in RD but not C2C12 cells. Furthermore, 13 transcripts involved in germline function were dramatically induced only in the RD cells expressing DUX4. The top 3 IPA canonical pathways affected by DUX4 were different between the RD (inflammation, BMP signaling and NRF-2 mediated oxidative stress) and the C2C12 cells (p53 signaling, cell cycle regulation and cellular energy metabolism). Amongst the 40 transcripts shared by the RD and C2C12 cells, UTS2 was significantly induced by 76 fold and 224 fold in the RD and C2C12 cells, respectively. The differential expression of MYOD, MYOG and UTS2 were validated using real-time quantitative RT-PCR. We further validated the differentially expressed genes in immortalized FSHD myoblasts and showed up-regulation of MYOD, MYOG, ZSCAN4 and UTS2. The results suggest that DUX4 regulates overlapped and distinct groups of genes and pathways in human and mouse cells as evident by the selective up-regulation of genes involved in myogenesis and gametogenesis in human RD and immortalized cells as well as the different molecular pathways identified in the cells.

摘要

面肩肱型肌营养不良症(FSHD)与 4 号染色体 4q35 上的 D4Z4 阵列缺失有关。最近的研究表明,来自最后一个 D4Z4 重复的双同源盒 4(DUX4)的异常表达导致 FSHD。本研究的目的是确定在人类和鼠肌肉谱系细胞中外源表达 DUX4 后的转录组反应。我们分别使用 Affymetrix Human Genome U133 Plus 2.0 阵列和 Mouse Genome 430 2.0 阵列对转染 DUX4 表达载体的人横纹肌肉瘤(RD)细胞和鼠 C2C12 细胞进行表达谱分析。在 RD 和 C2C12 细胞中,分别有 2267 和 150 个转录本被鉴定为差异表达。在 RD 细胞中差异表达的转录本中,MYOD 和 MYOG(2 倍,p<0.05)和六个 MYOD 下游靶标在 RD 中上调,但在 C2C12 细胞中未上调。此外,仅在表达 DUX4 的 RD 细胞中,13 个参与生殖系功能的转录本被显著诱导。受 DUX4 影响的前 3 个 IPA 规范途径在 RD(炎症、BMP 信号和 NRF-2 介导的氧化应激)和 C2C12 细胞(p53 信号、细胞周期调节和细胞能量代谢)之间不同。在 RD 和 C2C12 细胞共有的 40 个转录本中,UTS2 在 RD 和 C2C12 细胞中分别被显著诱导了 76 倍和 224 倍。使用实时定量 RT-PCR 验证了 MYOD、MYOG 和 UTS2 的差异表达。我们进一步验证了在永生化 FSHD 成肌细胞中的差异表达基因,并显示 MYOD、MYOG、ZSCAN4 和 UTS2 的上调。结果表明,在人类和鼠细胞中,DUX4 调节重叠和不同的基因和途径组,这从人类 RD 和永生化细胞中参与肌发生和配子发生的基因以及在细胞中鉴定的不同分子途径的选择性上调中得到证实。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffde/3661531/012963b94776/pone.0064691.g001.jpg

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