Okuno Yutaka, Huang Gang, Rosenbauer Frank, Evans Erica K, Radomska Hanna S, Iwasaki Hiromi, Akashi Koichi, Moreau-Gachelin Francoise, Li Youlin, Zhang Pu, Göttgens Berthold, Tenen Daniel G
Harvard Institutes of Medicine, Room 954, 77 Ave. Louis Pasteur, Boston, MA 02115, USA.
Mol Cell Biol. 2005 Apr;25(7):2832-45. doi: 10.1128/MCB.25.7.2832-2845.2005.
Regulation of the hematopoietic transcription factor PU.1 (Spi-1) plays a critical role in the development of white cells, and abnormal expression of PU.1 can lead to leukemia. We previously reported that the PU.1 promoter cannot induce expression of a reporter gene in vivo, and cell-type-specific expression of PU.1 in stable lines was conferred by a 3.4-kb DNA fragment including a DNase I hypersensitive site located 14 kb upstream of the transcription start site. Here we demonstrate that this kb -14 site confers lineage-specific reporter gene expression in vivo. This kb -14 upstream regulatory element contains two 300-bp regions which are highly conserved in five mammalian species. In Friend virus-induced erythroleukemia, the spleen focus-forming virus integrates into the PU.1 locus between these two conserved regions. DNA binding experiments demonstrated that PU.1 itself and Elf-1 bind to a highly conserved site within the proximal homologous region in vivo. A mutation of this site abolishing binding of PU.1 and Elf-1 led to a marked decrease in the ability of this upstream element to direct activity of reporter gene in myelomonocytic cell lines. These data suggest that a potential positive autoregulatory loop mediated through an upstream regulatory element is essential for proper PU.1 gene expression.
造血转录因子PU.1(Spi-1)的调控在白细胞发育中起关键作用,PU.1的异常表达可导致白血病。我们先前报道,PU.1启动子在体内不能诱导报告基因的表达,而稳定细胞系中PU.1的细胞类型特异性表达是由一个3.4 kb的DNA片段赋予的,该片段包含一个位于转录起始位点上游14 kb处的DNase I超敏位点。在此我们证明,这个-14 kb位点在体内赋予了谱系特异性报告基因表达。这个-14 kb上游调控元件包含两个300 bp的区域,在五个哺乳动物物种中高度保守。在弗氏病毒诱导的红白血病中,脾集落形成病毒整合到这两个保守区域之间的PU.1基因座中。DNA结合实验表明,PU.1自身和Elf-1在体内与近端同源区域内的一个高度保守位点结合。该位点的突变消除了PU.1和Elf-1的结合,导致该上游元件在骨髓单核细胞系中指导报告基因活性的能力显著下降。这些数据表明,通过上游调控元件介导的潜在正性自调节环对于PU.1基因的正常表达至关重要。