Department of Biochemistry and Molecular Biology, Peking University Health Science Center, Xue Yuan Road 38, Beijing 100191, PR China.
Department of Biochemistry and Molecular Biology, Peking University Health Science Center, Xue Yuan Road 38, Beijing 100191, PR China.
Biochem Biophys Res Commun. 2014 Jul 18;450(1):470-5. doi: 10.1016/j.bbrc.2014.05.138. Epub 2014 Jun 6.
DNA damage may regulate microRNA (miRNA) biosynthesis at the levels of miRNA transcription, processing and maturation. Although involvement of E2F1 in the regulation of miRNA gene activation in response to DNA damage has been documented, little is known about the role of E2F1 in miRNA processing. In this study we demonstrate that E2F1 enhances miR-630 biosynthesis under cisplatin (CIS) exposure through promoting DROSHA-mediated pri-miR-630 processing. Northern blot and RT-qPCR revealed that CIS exposure caused not only an increase in pri-miR-630 but also much more increase in pre-miR-630 and mature miR-630. The increases in pri-miR-630 and pre-miR-630 expression in unmatched proportion indicated that primary transcript processing was involved in CIS-stimulated miR-630 biosynthesis. Furthermore, combination of reporter enzyme assay with mutation and over-expression of E2F1 showed that induction of DROSHA promoted miR-630 expression, in which CIS-induced E2F1 activated DROSHA gene expression by recognizing and binding two E2F1 sites at the positions -214/-207 and -167/-160 of the DROSHA promoter. The increased binding of E2F1 to the DROSHA promoter in CIS-exposed cells was further evidenced by chromatin immunoprecipitation assay. Together, E2F1-regulated DROSHA promotes pri-miR-630 processing, thereby, contributes to CIS-stimulated miR-630 expression. The involvement of E2F1-dependent DROSHA activation in pri-miRNA processing under DNA damage stress will provide further insight into the regulation of miRNA biosynthesis. These data also give us a deeper understanding of E2F1 role in response to DNA damage.
DNA 损伤可能会在 miRNA 转录、加工和成熟水平上调节 microRNA(miRNA)的生物合成。虽然已经有文献证明 E2F1 参与了 DNA 损伤响应中 miRNA 基因激活的调节,但对于 E2F1 在 miRNA 加工中的作用知之甚少。在这项研究中,我们证明了 E2F1 通过促进 DROSHA 介导的 pri-miR-630 加工,在顺铂(CIS)暴露下增强 miR-630 的生物合成。Northern blot 和 RT-qPCR 显示,CIS 暴露不仅导致 pri-miR-630 的增加,而且 pre-miR-630 和成熟的 miR-630 的增加更多。pri-miR-630 和 pre-miR-630 表达的不成比例增加表明初级转录物的加工参与了 CIS 刺激的 miR-630 生物合成。此外,将报告酶测定与 E2F1 的突变和过表达相结合表明,DROSHA 的诱导促进了 miR-630 的表达,其中 CIS 诱导的 E2F1 通过识别和结合 DROSHA 启动子上的两个 E2F1 位点(-214/-207 和 -167/-160)来激活 DROSHA 基因表达。染色质免疫沉淀测定进一步证明了 CIS 暴露细胞中 E2F1 与 DROSHA 启动子的结合增加。总之,E2F1 调节的 DROSHA 促进 pri-miR-630 的加工,从而有助于 CIS 刺激的 miR-630 表达。E2F1 依赖性 DROSHA 激活在 DNA 损伤应激下 pri-miRNA 加工中的参与将为 miRNA 生物合成的调节提供进一步的认识。这些数据也使我们更深入地了解 E2F1 在应对 DNA 损伤中的作用。