Le Clech Mikaël, Chalhoub Elias, Dohet Christiane, Roure Virginie, Fichelson Serge, Moreau-Gachelin Françoise, Mathieu Danièle
Institut de Génétique Moléculaire-UMR5535-IFR22, CNRS 1919 Route de Mende F-34980 Montpellier, France.
J Mol Biol. 2006 Jan 6;355(1):9-19. doi: 10.1016/j.jmb.2005.10.055. Epub 2005 Nov 8.
The TAL-1/SCL gene encodes a basic helix-loop-helix (bHLH) transcription factor essential for primitive hematopoiesis and for adult erythroid and megakaryocytic development. Activated transcription of TAL-1 as a consequence of chromosomal rearrangements is associated with a high proportion of human T cell acute leukemias, showing that appropriate control of TAL-1 is crucial for the formation and subsequent fate of hematopoietic cells. Hence, the knowledge of the mechanisms, which govern the pattern of TAL-1 expression in hematopoiesis, is of great interest. We previously described a silencer in the 3'-untranslated region of human TAL-1, the activity of which is mediated through binding of a tissue-specific 40 kDa nuclear protein to a new DNA recognition motif, named tal-RE. Here, we show that tal-RE-binding activity, high in immature human hematopoietic progenitors is down regulated upon erythroid and megakaryocytic differentiation. This expression profile helped us to identify that PU.1/Spi-1 binds to the tal-RE sequences in vitro and occupies the TAL-1 silencer in vivo. By expressing a mutant protein containing only the ETS domain of PU.1 in human erythroleukemic HEL cells, we demonstrated that PU.1 mediates the transcriptional repression activity of the silencer. We found that ectopic PU.1 is not able to induce silencing activity in PU.1-negative Jurkat T cells, indicating that PU.1 activity, although necessary, is not sufficient to confer transcriptional repression activity to the TAL-1 silencer. Finally, we showed that the silencer is also active in TAL-1-negative myeloid HL60 cells that express PU.1 at high levels. In summary, our study shows that PU.1, in addition to its positive role in TAL-1 expression in early hematopoietic progenitors, may also act as a mediator of TAL-1 silencing in some hematopoietic lineages.
TAL-1/SCL基因编码一种基本的螺旋-环-螺旋(bHLH)转录因子,对原始造血以及成体红细胞和巨核细胞发育至关重要。由于染色体重排导致的TAL-1转录激活与高比例的人类T细胞急性白血病相关,这表明对TAL-1进行适当调控对于造血细胞的形成及其后续命运至关重要。因此,了解调控造血过程中TAL-1表达模式的机制具有重要意义。我们之前描述了人类TAL-1 3'-非翻译区的一个沉默子,其活性是通过一种组织特异性的40 kDa核蛋白与一个名为tal-RE的新DNA识别基序结合来介导的。在此,我们表明,在未成熟的人类造血祖细胞中含量较高的tal-RE结合活性在红细胞和巨核细胞分化时会下调。这种表达谱帮助我们确定PU.1/Spi-1在体外与tal-RE序列结合,并在体内占据TAL-1沉默子。通过在人类红白血病HEL细胞中表达仅包含PU.1的ETS结构域的突变蛋白,我们证明PU.1介导了沉默子的转录抑制活性。我们发现异位表达的PU.1无法在PU.1阴性的Jurkat T细胞中诱导沉默活性,这表明PU.1的活性虽然是必需的,但不足以赋予TAL-1沉默子转录抑制活性。最后,我们表明该沉默子在高水平表达PU.1的TAL-1阴性髓系HL60细胞中也具有活性。总之,我们的研究表明,PU.1除了在早期造血祖细胞中对TAL-1表达具有正向作用外,在某些造血谱系中也可能作为TAL-1沉默的介导因子。