Desjobert Cecile, Noy Peter, Swingler Tracey, Williams Hannah, Gaston Kevin, Jayaraman Padma-Sheela
Department of Biochemistry, Medical School, University of Bristol, University Walk, Bristol BS81TD, UK.
Biochem J. 2009 Jan 1;417(1):121-32. doi: 10.1042/BJ20080872.
The PRH (proline-rich homeodomain) [also known as Hex (haematopoietically expressed homeobox)] protein is a transcription factor that functions as an important regulator of vertebrate development and many other processes in the adult including haematopoiesis. The Groucho/TLE (transducin-like enhancer) family of co-repressor proteins also regulate development and modulate the activity of many DNA-binding transcription factors during a range of diverse cellular processes including haematopoiesis. We have shown previously that PRH is a repressor of transcription in haematopoietic cells and that an Eh-1 (Engrailed homology) motif present within the N-terminal transcription repression domain of PRH mediates binding to Groucho/TLE proteins and enables co-repression. In the present study we demonstrate that PRH regulates the nuclear retention of TLE proteins during cellular fractionation. We show that transcriptional repression and the nuclear retention of TLE proteins requires PRH to bind to both TLE and DNA. In addition, we characterize a trans-dominant-negative PRH protein that inhibits wild-type PRH activity by sequestering TLE proteins to specific subnuclear domains. These results demonstrate that transcriptional repression by PRH is dependent on TLE availability and suggest that subnuclear localization of TLE plays an important role in transcriptional repression by PRH.
富含脯氨酸的同源结构域(PRH)蛋白[也称为Hex(造血表达同源盒)蛋白]是一种转录因子,在脊椎动物发育及包括造血作用在内的成体许多其他过程中发挥重要调节作用。共抑制蛋白的Groucho/TLE(转导素样增强子)家族也在包括造血作用在内的一系列不同细胞过程中调节发育并调节许多DNA结合转录因子的活性。我们之前已经表明,PRH是造血细胞中转录的抑制因子,并且PRH的N端转录抑制结构域中存在的Eh-1(同源异形框同源)基序介导与Groucho/TLE蛋白的结合并实现共抑制。在本研究中,我们证明PRH在细胞分级分离过程中调节TLE蛋白的核内滞留。我们表明,转录抑制和TLE蛋白的核内滞留要求PRH同时结合TLE和DNA。此外,我们鉴定了一种反式显性负性PRH蛋白,它通过将TLE蛋白隔离到特定的核内亚结构域来抑制野生型PRH活性。这些结果表明,PRH介导的转录抑制依赖于TLE的可利用性,并提示TLE的核内亚定位在PRH介导的转录抑制中起重要作用。