Kaul Zeenia, Cheung Caroline T Y, Bhargava Priyanshu, Sari Anissa Notifa, Yu Yue, Huifu He, Bid Hemant, Henson Jeremy D, Groden Joanna, Reddel Roger R, Kaul Sunil C, Wadhwa Renu
Children's Medical Research Institute, Faculty of Medicine and Health, The University of Sydney, Westmead, NSW, 2145, Australia.
AIST-INDIA DAILAB, DBT-AIST International Center for Translational & Environmental Research (DAICENTER), National Institute of Advanced Industrial Science & Technology (AIST), Tsukuba, 305-8565, Japan.
Sci Rep. 2021 Aug 23;11(1):17052. doi: 10.1038/s41598-021-96096-y.
Activation of a telomere length maintenance mechanism (TMM), including telomerase and alternative lengthening of telomeres (ALT), is essential for replicative immortality of tumor cells, although its regulatory mechanisms are incompletely understood. We conducted a microRNA (miRNA) microarray analysis on isogenic telomerase positive (TEP) and ALT cancer cell lines. Amongst nine miRNAs that showed difference in their expression in TEP and ALT cancer cells in array analysis, miR-708 was selected for further analysis since it was consistently highly expressed in a large panel of ALT cells. miR-708 in TEP and ALT cancer cells was not correlated with C-circle levels, an established feature of ALT cells. Its overexpression induced suppression of cell migration, invasion, and angiogenesis in both TEP and ALT cells, although cell proliferation was inhibited only in TEP cells suggesting that ALT cells may have acquired the ability to escape inhibition of cell proliferation by sustained miR-708 overexpression. Further, cell proliferation regulation in TEP cells by miR708 appears to be through the CARF-p53 pathway. We demonstrate here that miR-708 (i) is the first miRNA shown to be differentially regulated in TEP and ALT cancer cells, (ii) possesses tumor suppressor function, and (iii) deregulates CARF and p21-mediated signaling to limit proliferation in TEP cells.
端粒长度维持机制(TMM)的激活,包括端粒酶和端粒的替代延长(ALT),对于肿瘤细胞的复制永生至关重要,尽管其调控机制尚未完全了解。我们对同基因的端粒酶阳性(TEP)和ALT癌细胞系进行了 microRNA(miRNA)微阵列分析。在阵列分析中,有9种miRNA在TEP和ALT癌细胞中的表达存在差异,其中miR-708被选作进一步分析对象,因为它在大量ALT细胞中持续高表达。TEP和ALT癌细胞中的miR-708与C圈水平无关,C圈水平是ALT细胞的一个既定特征。它的过表达在TEP和ALT细胞中均诱导细胞迁移、侵袭和血管生成受到抑制,不过仅在TEP细胞中抑制细胞增殖,这表明ALT细胞可能已经获得了通过持续过表达miR-708来逃避细胞增殖抑制的能力。此外,miR-708对TEP细胞中细胞增殖的调控似乎是通过CARF-p53途径。我们在此证明,miR-708(i)是首个被证明在TEP和ALT癌细胞中受到差异调控的miRNA,(ii)具有肿瘤抑制功能,以及(iii)通过解除CARF和p21介导的信号传导来限制TEP细胞的增殖。