Department of Molecular Bioscience, John Curtin School of Medical Research, The Australian National University Canberra, ACT, Australia.
Department of Molecular Bioscience, John Curtin School of Medical Research, The Australian National University Canberra, ACT, Australia ; Molecular and Cellular Oncology, University of Texas MD Anderson Cancer Center Houston, TX, USA.
Front Genet. 2014 Oct 7;5:338. doi: 10.3389/fgene.2014.00338. eCollection 2014.
Long interspersed nuclear element-1 (LINE-1 or L1) retrotransposons are insertional mutagens capable of altering the genomic landscape in many ways. Activation of the normally silent LINE-1 retrotransposon is associated with a high level of cancer-associated DNA damage and genomic instability. Studies of LINE-1 have so far focused mainly on changes in gene expression, and our knowledge of its impact on functional non-coding RNAs is in its infancy. However, current evidence suggests that a significant number of human miRNAs originate from retrotransposon sequences. Furthermore, LINE-1 is generally not expressed in normal tissues while its expression is widespread in epithelial cancers. Based on our recent studies, we demonstrate a functional link between aberrant LINE-1 expression and deregulation of let-7 miRNA expression. Since the expression of let-7 is modulated by LINE-1 activity, we discuss possible mechanisms for this effect and how the silencing of LINE-1 activation could provide new therapeutic options for cancer treatment. Based on the deep sequencing of small RNAs in parallel with gene expression profiling in breast cancer cells, we have identified potential pathways linking L1 activity to let-7 processing and maturation and ultimately to the control of stemness in human cancer cells.
长散布核元件-1(LINE-1 或 L1)逆转录转座子是插入性诱变剂,能够以多种方式改变基因组景观。正常沉默的 LINE-1 逆转录转座子的激活与高水平的癌症相关 DNA 损伤和基因组不稳定性有关。目前对 LINE-1 的研究主要集中在基因表达的变化上,而我们对其对功能性非编码 RNA 的影响的了解还处于起步阶段。然而,目前的证据表明,大量的人类 miRNA 起源于逆转录转座子序列。此外,LINE-1 在正常组织中通常不表达,而在上皮癌中广泛表达。基于我们最近的研究,我们证明了异常的 LINE-1 表达与 let-7 miRNA 表达失调之间存在功能联系。由于 let-7 的表达受 LINE-1 活性的调节,我们讨论了这种效应的可能机制,以及沉默 LINE-1 激活如何为癌症治疗提供新的治疗选择。基于对乳腺癌细胞中小 RNA 的深度测序和基因表达谱分析,我们已经确定了将 L1 活性与 let-7 加工和成熟以及最终与人类癌细胞干性控制联系起来的潜在途径。