Nelson Erik A, Walker Sarah R, Alvarez James V, Frank David A
Department of Medical Oncology, Dana-Farber Cancer Institute, Harvard Medical School and Brigham and Women's Hospital, Boston, Massachusetts 02115, USA.
J Biol Chem. 2004 Dec 24;279(52):54724-30. doi: 10.1074/jbc.M408464200. Epub 2004 Oct 20.
STAT5a and STAT5b are two highly related transcription factors that control essential cellular functions. Several STAT5 targets are known, although it is likely that most remain uncharacterized. To identify a more complete set of STAT5-regulated genes, we used a modification of the chromatin immunoprecipitation procedure, which does not presuppose any information regarding these targets. Employing Ba/f3 cells in which STAT5 is activated by interleukin-3, we have identified novel STAT5 binding sites that may be regulatory regions for nearby genes. These sites are typically found far from transcription start sites, and most do not contain CpG islands, indicating that they are not in traditional promoter regions. Nonetheless, when the expression of genes near these STAT5 binding sites was examined, all were expressed in Ba/f3 cells, and most were modulated by interleukin-3. Furthermore, genes identified by this strategy show unique expression patterns in acute leukemias, tumors characterized by activated STAT5. Whereas both STAT5 isoforms bound to all promoters tested, STAT5a and STAT5b bound with different kinetics, suggesting that at least some of the differences between the functions of these two proteins are mediated by their DNA binding activity. Therefore, this method of transcription factor target identification represents an effective strategy to isolate transcription factor targets in an unbiased fashion, and it has revealed many novel STAT5-dependent regulatory regions outside of traditional promoters.
信号转导和转录激活因子5a(STAT5a)和信号转导和转录激活因子5b(STAT5b)是两种高度相关的转录因子,它们控制着细胞的基本功能。已知有几个STAT5的靶标,尽管很可能大多数仍未被鉴定。为了确定更完整的一组受STAT5调控的基因,我们对染色质免疫沉淀程序进行了改进,该方法并不预先假定有关这些靶标的任何信息。利用白细胞介素-3激活STAT5的Ba/f3细胞,我们鉴定出了可能是附近基因调控区域的新型STAT5结合位点。这些位点通常远离转录起始位点,并且大多数不包含CpG岛,这表明它们不在传统的启动子区域。尽管如此,当检测这些STAT5结合位点附近基因的表达时,所有基因均在Ba/f3细胞中表达,并且大多数受白细胞介素-3调节。此外,通过该策略鉴定的基因在急性白血病(以激活的STAT5为特征的肿瘤)中显示出独特的表达模式。虽然两种STAT5异构体都与所有测试的启动子结合,但STAT5a和STAT5b以不同的动力学结合,这表明这两种蛋白质功能之间的至少一些差异是由它们的DNA结合活性介导的。因此,这种转录因子靶标鉴定方法代表了一种以无偏见方式分离转录因子靶标的有效策略,并且它揭示了许多传统启动子之外的新型STAT5依赖性调控区域。