Samuel Nardin, Wilson Gavin, Id Said Badr, Pan Anna, Deblois Genevieve, Fischer Nicholas W, Alexandrova Roumiana, Casallo Guillermo, Paton Tara, Lupien Mathieu, Gariepy Jean, Merico Daniele, Hudson Thomas J, Malkin David
Department of Medical Biophysics, Faculty of Medicine, University of Toronto, Toronto, Canada.
Genetics and Genome Biology Program, The Hospital for Sick Children, Toronto, Canada.
Oncotarget. 2016 Aug 2;7(31):49611-49622. doi: 10.18632/oncotarget.10417.
microRNA-34A is a critical component of the p53 network and expression of miR- 34A is down-regulated by promoter hypermethylation or focal deletions in numerous human cancers. Although miR-34A deregulation may be an important driver in cancer, the endogenous role of this microRNA in cellular homeostasis is not well characterized. To address this knowledge gap, we aimed to determine the transcriptional landscape of the miR-34A-p53 axis in non-transformed cells. Using primary skin-derived fibroblast cell lines from patients who developed childhood cancers, and who harbor either germline TP53 mutations or are TP53 wild type, we sought to characterize the transcriptional response to miR-34A modulation. Through transcriptome-wide RNA-Sequencing, we show for the first time that in human non- transformed cells harboring TP53 mutations, miR-34A functions in a noncanonical manner to influence noncoding RNA networks, including RNA components of the minor (U12) spliceosome, as well as TP53-dependent and independent epigenetic pathways. miR- 34A-regulated transcripts include known cell cycle mediators and abrogation of miR-34A leads to a TP53-dependent increase in the fraction of cells in G2/M. Collectively, these results provide a framework for understanding the endogenous role of the miR-34A signaling axis and identify novel transcripts and pathways regulated by the essential miR-34A-p53 tumor suppressor network.
微小RNA-34A是p53网络的关键组成部分,在许多人类癌症中,miR-34A的表达因启动子高甲基化或局灶性缺失而下调。尽管miR-34A失调可能是癌症的重要驱动因素,但这种微小RNA在细胞稳态中的内源性作用尚未得到充分表征。为了填补这一知识空白,我们旨在确定非转化细胞中miR-34A-p53轴的转录图谱。我们使用来自患有儿童癌症且携带种系TP53突变或为TP53野生型的患者的原发性皮肤成纤维细胞系,试图表征对miR-34A调节的转录反应。通过全转录组RNA测序,我们首次表明,在携带TP53突变的人类非转化细胞中,miR-34A以非经典方式发挥作用,影响非编码RNA网络,包括小(U12)剪接体的RNA成分以及TP53依赖性和非依赖性表观遗传途径。miR-34A调节的转录本包括已知的细胞周期调节因子,miR-34A的缺失导致G2/M期细胞比例的TP53依赖性增加。总的来说,这些结果为理解miR-34A信号轴的内源性作用提供了一个框架,并确定了由关键的miR-34A-p53肿瘤抑制网络调节的新转录本和途径。