Kiefer Hélène, Chatail-Hermitte Fabienne, Ravassard Philippe, Bayard Elisa, Brunet Isabelle, Mallet Jacques
Laboratoire de Génétique Moléculaire de la Neurotransmission et des Processus Neurodégénératifs, CNRS UMR 7091, BAtiment CERVI, Hôpital de la Pitié-Salpêtrière, 83, Blvd. de l'Hôpital, 75013 Paris, France.
Mol Cell Biol. 2005 Mar;25(5):1713-29. doi: 10.1128/MCB.25.5.1713-1729.2005.
The rat tyrosine hydroxylase gene promoter contains an E-box/dyad motif and an octameric and heptameric element that may be recognized by classes of transcription factors highly expressed during nervous system development. In a one-hybrid genetic screen, we used these sites as targets to isolate cDNAs encoding new transcription factors present in the brain. We identified ZENON, a novel rat POZ protein that contains two clusters of Kruppel-like zinc fingers and that presents several features of a transcription factor. ZENON is found in nuclei following transient transfection with the cDNA. The N-terminal zinc finger cluster contains a DNA binding domain that interacts with the E box. Cotranfection experiments revealed that ZENON induces tyrosine hydroxylase promoter activity. Unlike other POZ proteins, the ZENON POZ domain is not required for either activation of transcription or self-association. In the embryonic neural tube, ZENON expression is restricted to neurons that have already achieved mitosis and are engaged in late stages of neuronal differentiation (late postmitotic neurons). ZENON neuronal expression persists in the adult brain; therefore, ZENON can be considered a marker of mature neurons. We propose that ZENON is involved in the maintenance of panneuronal features and/or in the survival of mature neurons.
大鼠酪氨酸羟化酶基因启动子包含一个E盒/双联体基序以及一个八聚体和七聚体元件,这些元件可能被神经系统发育过程中高表达的几类转录因子识别。在一项单杂交基因筛选中,我们将这些位点作为靶点,以分离编码大脑中存在的新转录因子的cDNA。我们鉴定出了ZENON,一种新型大鼠POZ蛋白,它含有两簇类 Kruppel 样锌指结构,具有转录因子的若干特征。用该cDNA进行瞬时转染后,ZENON出现在细胞核中。N端锌指簇包含一个与E盒相互作用的DNA结合结构域。共转染实验表明,ZENON可诱导酪氨酸羟化酶启动子活性。与其他POZ蛋白不同,转录激活或自我缔合均不需要ZENON的POZ结构域。在胚胎神经管中,ZENON的表达仅限于已经完成有丝分裂并处于神经元分化后期(有丝分裂后晚期神经元)的神经元。ZENON在成体大脑中持续表达;因此,ZENON可被视为成熟神经元的标志物。我们推测,ZENON参与维持全神经元特征和/或成熟神经元的存活。