在raf诱导的衰老中激活bmp - smad信号的表观遗传改变。

Mai Fujimoto, Yasunobu Mano, M. Anai, Shogo Yamamoto, Masaki Fukuyo, H. Aburatani, Atsushi Kaneda
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引用次数: 5

摘要

目的探讨致癌Raf诱导细胞衰老过程中表观基因组和基因表达的变化。方法通过感染表达致癌Raf (RafV600E)的逆转录病毒,诱导小鼠胚胎成纤维细胞(mef)细胞衰老。收集RafV600E细胞、未感染mef和模拟感染mef的RNA,利用微阵列进行全基因组基因表达分析。通过染色质免疫沉淀测序分析第7天RafV600E细胞和未感染mef的活性H3K4me3和抑制H3K27me3组蛋白标记的表观基因组状态。这些raf诱导的衰老数据与我们之前的研究中获得的ras诱导的衰老数据进行了比较。逆转录病毒感染导致基因敲低和过表达。结果虽然在Ras-或Raf-诱导的衰老过程中,包括分泌因子在内的一些基因的表达发生了特异性改变,但在Raf-和Ras-诱导的衰老过程中,许多基因表现出相似的改变模式。共有841个共同上调的841个基因和573个共同下调的基因显示信号蛋白和分泌蛋白相关基因显著富集,提示分泌因子改变的重要性。Bmp2是一种激活Bmp2- smad信号的分泌蛋白,在raf诱导的衰老过程中,随着H3K4me3的增加和H3K27me3的缺失,Bmp2被shRNA敲低导致raf诱导的衰老逃逸,正如之前在ras诱导的衰老中发现的。在raf诱导的衰老中发现,Bmp2-Smad抑制剂Smad6在H3K4me3缺失的情况下被强烈抑制,并且在raf激活的细胞中Smad6的诱导也绕过了衰老。然而,与ras诱导的衰老不同,在raf诱导的衰老过程中,H3K27me3的增益并不发生在Smad6启动子区域。在比较Ras-和raf诱导的衰老之间的全基因组改变时,衰老过程中显示H3K27me3缺失的基因显著重叠;显示H3K4me3增益或H3K4me3缺失的基因在Ras-和raf -诱导的衰老之间也有很好的重叠。然而,与H3K27me3缺失、H3K4me3获得或H3K4me3缺失的基因相比,H3K27me3获得的基因很少有明显的重叠。结论尽管表观遗传改变部分不同,但在ras诱导的衰老中发现,Bmp2上调和Smad6抑制发生并促进了raf诱导的衰老。
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Epigenetic alteration to activate Bmp2-Smad signaling in Raf-induced senescence.
AIM To investigate epigenomic and gene expression alterations during cellular senescence induced by oncogenic Raf. METHODS Cellular senescence was induced into mouse embryonic fibroblasts (MEFs) by infecting retrovirus to express oncogenic Raf (RafV600E). RNA was collected from RafV600E cells as well as MEFs without infection and MEFs with mock infection, and a genome-wide gene expression analysis was performed using microarray. The epigenomic status for active H3K4me3 and repressive H3K27me3 histone marks was analyzed by chromatin immunoprecipitation-sequencing for RafV600E cells on day 7 and for MEFs without infection. These data for Raf-induced senescence were compared with data for Ras-induced senescence that were obtained in our previous study. Gene knockdown and overexpression were done by retrovirus infection. RESULTS Although the expression of some genes including secreted factors was specifically altered in either Ras- or Raf-induced senescence, many genes showed similar alteration pattern in Raf- and Ras-induced senescence. A total of 841 commonly upregulated 841 genes and 573 commonly downregulated genes showed a significant enrichment of genes related to signal and secreted proteins, suggesting the importance of alterations in secreted factors. Bmp2, a secreted protein to activate Bmp2-Smad signaling, was highly upregulated with gain of H3K4me3 and loss of H3K27me3 during Raf-induced senescence, as previously detected in Ras-induced senescence, and the knockdown of Bmp2 by shRNA lead to escape from Raf-induced senescence. Bmp2-Smad inhibitor Smad6 was strongly repressed with H3K4me3 loss in Raf-induced senescence, as detected in Ras-induced senescence, and senescence was also bypassed by Smad6 induction in Raf-activated cells. Different from Ras-induced senescence, however, gain of H3K27me3 did not occur in the Smad6 promoter region during Raf-induced senescence. When comparing genome-wide alteration between Ras- and Raf-induced senescence, genes showing loss of H3K27me3 during senescence significantly overlapped; genes showing H3K4me3 gain, or those showing H3K4me3 loss, also well-overlapped between Ras- and Raf-induced senescence. However, genes with gain of H3K27me3 overlapped significantly rarely, compared with those with H3K27me3 loss, with H3K4me3 gain, or with H3K4me3 loss. CONCLUSION Although epigenetic alterations are partly different, Bmp2 upregulation and Smad6 repression occur and contribute to Raf-induced senescence, as detected in Ras-induced senescence.
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