CAS Key Laboratory of Innate Immunity and Chronic Disease, CAS Centre for Excellence in Molecular Cell Science, School of Life Sciences and First Affiliated Hospital of University of Science and Technology of China, Hefei 230027, China.
Key Laboratory of Stem Cell Differentiation & Modification, School of Clinical Medicine, Henan University, Zhengzhou 450003, China.
Nucleic Acids Res. 2020 Apr 6;48(6):3089-3102. doi: 10.1093/nar/gkaa063.
Long non-coding RNAs (lncRNAs) have emerged as important biological tuners. Here, we reveal the role of an uncharacterized lncRNA we call SENEBLOC that is expressed by both normal and transformed cells under homeostatic conditions. SENEBLOC was shown to block the induction of cellular senescence through dual mechanisms that converge to repress the expression of p21. SENEBLOC facilitates the association of p53 with MDM2 by acting as a scaffold to promote p53 turnover and decrease p21 transactivation. Alternatively, SENEBLOC was shown to affect epigenetic silencing of the p21 gene promoter through regulation of HDAC5. Thus SENEBLOC drives both p53-dependent and p53-independent mechanisms that contribute to p21 repression. Moreover, SENEBLOC was shown to be involved in both oncogenic and replicative senescence, and from the perspective of senolytic agents we show that the antagonistic actions of rapamycin on senescence are dependent on SENEBLOC expression.
长非编码 RNA(lncRNA)已成为重要的生物学调控因子。在这里,我们揭示了一个未被表征的 lncRNA 的作用,我们称之为 SENEBLOC,它在正常和转化细胞中在稳态条件下表达。研究表明,SENEBLOC 通过两种机制阻止细胞衰老的诱导,这两种机制汇聚在一起抑制 p21 的表达。SENEBLOC 通过充当支架促进 p53 周转和降低 p21 反式激活,促进 p53 与 MDM2 的结合。另外,SENEBLOC 被证明通过调节 HDAC5 影响 p21 基因启动子的表观遗传沉默。因此,SENEBLOC 驱动 p53 依赖性和 p53 非依赖性机制,有助于 p21 的抑制。此外,SENEBLOC 被证明参与致癌和复制性衰老,从衰老裂解剂的角度来看,我们表明雷帕霉素对衰老的拮抗作用依赖于 SENEBLOC 的表达。