Poliseno Laura, Pitto Letizia, Simili Marcella, Mariani Laura, Riccardi Luisa, Ciucci Alessia, Rizzo Milena, Evangelista Monica, Mercatanti Alberto, Pandolfi Pier Paolo, Rainaldi Giuseppe
Laboratory of Gene and Molecular Therapy, Institute of Clinical Physiology, CNR, Pisa, Italy.
PLoS One. 2008 Jul 2;3(7):e2542. doi: 10.1371/journal.pone.0002542.
MicroRNAs (miRNAs) are short 20-22 nucleotide RNA molecules that act as negative regulators of gene expression via translational repression: they have been shown to play a role in development, proliferation, stress response, and apoptosis. The transcriptional regulator LRF (Leukemia/lymphoma Related Factor) has been shown to prevent p19ARF transcription and consequently to inhibit senescence in mouse embryonic fibroblasts (MEF). Here we report, for the first time, that LRF is post-transcriptionally regulated by miR-20a. Using a gene reporter assay, direct interaction of miR-20a with the LRF 3'UTR is demonstrated. To validate the interaction miR-20a/3'UTR LRF miR-20a was over-expressed, either by transient transfection or retroviral infection, in wild type mouse embryo fibroblasts and in LRF-null MEF derived from LRF knock-out mice. We observed LRF decrease, p19ARF increase, inhibition of cell proliferation and induction of senescence. The comparison of miR-20a activity in wt and LRF-null MEF indicates that LRF is the main mediator of the miR-20a-induced senescence and that other targets are cooperating. As LRF down-regulation/p19ARF induction is always accompanied by E2F1 down-regulation and increase of p16, we propose that all these events act in synergy to accomplish miR-20a-induced senescence in MEF. Senescence has been recently revaluated as a tumor suppressor mechanism, alternative to apoptosis; from this point of view the discovery of new physiological "senescence inducer" appears to be promising as this molecule could be used as anticancer drug.
微小RNA(miRNA)是一类长度为20 - 22个核苷酸的短RNA分子,通过翻译抑制作用作为基因表达的负调控因子:它们已被证明在发育、增殖、应激反应和细胞凋亡中发挥作用。转录调节因子LRF(白血病/淋巴瘤相关因子)已被证明可阻止p19ARF的转录,从而抑制小鼠胚胎成纤维细胞(MEF)的衰老。在此,我们首次报道LRF在转录后受miR - 20a调控。通过基因报告基因检测,证明了miR - 20a与LRF 3'非翻译区(UTR)的直接相互作用。为了验证miR - 20a/3'UTR LRF的相互作用,通过瞬时转染或逆转录病毒感染,在野生型小鼠胚胎成纤维细胞和源自LRF基因敲除小鼠的LRF缺失的MEF中过表达miR - 20a。我们观察到LRF减少、p19ARF增加、细胞增殖受到抑制以及衰老诱导。野生型和LRF缺失的MEF中miR - 20a活性的比较表明,LRF是miR - 20a诱导衰老的主要介导因子,并且其他靶点也在协同作用。由于LRF下调/p19ARF诱导总是伴随着E2F1下调和p16增加,我们提出所有这些事件协同作用以完成miR - 20a诱导的MEF衰老。衰老最近被重新评估为一种肿瘤抑制机制,是细胞凋亡的替代机制;从这个角度来看,发现新的生理性“衰老诱导剂”似乎很有前景,因为这种分子可作为抗癌药物。
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