Institut de Pharmacologie Moléculaire et Cellulaire, UMR7275 CNRS/UNSA, Sophia-Antipolis, Valbonne 06560, France.
J Mol Cell Biol. 2013 Apr;5(2):132-42. doi: 10.1093/jmcb/mjt003. Epub 2013 Jan 28.
We previously established that besides its canonical function as E3-ubiquitin ligase, parkin also behaves as a transcriptional repressor of p53. Here we show that parkin differently modulates presenilin-1 and presenilin-2 expression and functions at transcriptional level. Thus, parkin enhances/reduces the protein expression, promoter activity and mRNA levels of presenilin-1 and presenilin-2, respectively, in cells and in vivo. This parkin-associated function is independent of its ubiquitin-ligase activity and remains unrelated to its capacity to repress p53. Accordingly, physical interaction of endogenous or overexpressed parkin with presenilins promoters is demonstrated by chromatin immunoprecipitation assays (ChIP). Furthermore, we identify a consensus sequence, the deletion of which abolishes parkin-dependent modulation of presenilins-1/2 and p53 promoter activities. Interestingly, electrophoretic mobility shift assays (EMSA) revealed a physical interaction between this consensus sequence and wild-type but not mutated parkin. Finally, we demonstrate that the RING1-IBR-RING2 domain of parkin harbors parkin's potential to modulate presenilins promoters. This transcriptional control impacts on presenilins-associated phenotypes, since parkin increases presenilin-1-associated γ-secretase activity and reduces presenilin-2-linked caspase-3 activation. Overall, our data delineate a promoter responsive element targeted by parkin that drives differential regulation of presenilin-1 and presenilin-2 transcription with functional consequences for γ-secretase activity and cell death.
我们之前已经证实,除了作为 E3-泛素连接酶的典型功能外,Parkin 还表现为 p53 的转录抑制剂。在这里,我们展示了 Parkin 在转录水平上以不同的方式调节早老素-1 和早老素-2 的表达和功能。因此,Parkin 分别增强/降低细胞内和体内早老素-1 和早老素-2 的蛋白表达、启动子活性和 mRNA 水平。这种与 Parkin 相关的功能不依赖于其泛素连接酶活性,并且与它抑制 p53 的能力无关。因此,通过染色质免疫沉淀测定(ChIP)证实了内源性或过表达的 Parkin 与早老素启动子之间的物理相互作用。此外,我们确定了一个共识序列,该序列的缺失消除了 Parkin 对早老素-1/2 和 p53 启动子活性的依赖性调节。有趣的是,电泳迁移率变动分析(EMSA)显示,这个共识序列与野生型但不是突变型 Parkin 之间存在物理相互作用。最后,我们证明了 Parkin 的 RING1-IBR-RING2 结构域具有调节早老素启动子的潜力。这种转录控制影响早老素相关表型,因为 Parkin 增加了早老素-1 相关的γ-分泌酶活性并降低了早老素-2 相关的 caspase-3 激活。总的来说,我们的数据描绘了一个被 Parkin 靶向的启动子反应元件,该元件驱动早老素-1 和早老素-2 转录的差异调节,对 γ-分泌酶活性和细胞死亡具有功能影响。