Rodda S, Sharma S, Scherer M, Chapman G, Rathjen P
Department of Molecular Biosciences and ARC Special Research Centre for Molecular Genetics of Development, University of Adelaide, Adelaide, 5005 South Australia, Australia.
J Biol Chem. 2001 Feb 2;276(5):3324-32. doi: 10.1074/jbc.M008167200. Epub 2000 Nov 9.
CP2-related proteins comprise a family of DNA-binding transcription factors that are generally activators of transcription and expressed ubiquitously. We reported a differential display polymerase chain reaction fragment, Psc2, which was expressed in a regulated fashion in mouse pluripotent cells in vitro and in vivo. Here, we report further characterization of the Psc2 cDNA and function. The Psc2 cDNA contained an open reading frame homologous to CP2 family proteins. Regions implicated in DNA binding and oligomeric complex formation, but not transcription activation, were conserved. Psc2 expression in vivo during embryogenesis and in the adult mouse demonstrated tight spatial and temporal regulation, with the highest levels of expression in the epithelial lining of distal convoluted tubules in embryonic and adult kidneys. Functional analysis demonstrated that PSC2 repressed transcription 2.5-15-fold when bound to a heterologous promoter in ES, 293T, and COS-1 cells. The N-terminal 52 amino acids of PSC2 were shown to be necessary and sufficient for this activity and did not share obvious homology with reported repressor motifs. These results represent the first report of a CP2 family member that is expressed in a developmentally regulated fashion in vivo and that acts as a direct repressor of transcription. Accordingly, the protein has been named CP2-Related Transcriptional Repressor-1 (CRTR-1).
CP2相关蛋白构成了一类DNA结合转录因子家族,它们通常是转录激活因子且广泛表达。我们报道了一个差异显示聚合酶链反应片段Psc2,它在体外和体内的小鼠多能细胞中呈调控性表达。在此,我们报道Psc2 cDNA的进一步特征及功能。Psc2 cDNA包含一个与CP2家族蛋白同源的开放阅读框。与DNA结合和寡聚复合物形成相关但与转录激活无关的区域是保守的。胚胎发育期间及成年小鼠体内的Psc2表达显示出严格的时空调控,在胚胎和成年肾脏的远曲小管上皮衬里中表达水平最高。功能分析表明,当PSC2与ES、293T和COS-1细胞中的异源启动子结合时,它能抑制转录2.5至15倍。PSC2的N端52个氨基酸被证明对该活性是必需且足够的,并且与已报道的抑制基序没有明显的同源性。这些结果代表了首次报道的一个CP2家族成员,它在体内以发育调控的方式表达并且作为转录的直接抑制因子。因此,该蛋白被命名为CP2相关转录抑制因子-1(CRTR-1)。