Ernst P, Hahm K, Trinh L, Davis J N, Roussel M F, Turck C W, Smale S T
Department of Microbiology and Immunology, UCLA School of Medicine, Los Angeles, California 90095-1662, USA.
Mol Cell Biol. 1996 Nov;16(11):6121-31. doi: 10.1128/MCB.16.11.6121.
The terminal deoxynucleotidyltransferase (TdT) gene represents an attractive model for the analysis of gene regulation during an early phase of lymphocyte development. In previous studies, we identified a DNA element, termed D', which is essential for TdT promoter activity in immature lymphocytes, and two classes of D'-binding factors, Ikaros proteins and Ets proteins. Here, we report a detailed mutant analysis of the D' element which suggests that an Ets protein, rather than an Ikaros protein, activates TdT transcription. Since multiple Ets proteins are expressed in developing lymphocytes and are capable of binding to the D' element, DNA affinity chromatography was used to determine if one of the Ets proteins might bind to the D' element with a uniquely high affinity, thereby implicating that protein as a potential TdT activator. Indeed, one binding activity was greatly enriched in the high-salt eluates from a D' affinity column. Peptide microsequencing revealed that the enriched protein was Elf-1. Immunoblot analyses confirmed that in nuclear extracts, Elf-1 has a significantly higher affinity for the D' sequence than does another Ets protein, Ets-1. Transactivation and expression studies support the hypothesis that Elf-1 activates TdT transcription in immature T and B cells. Finally, a D' mutation which selectively reduces Elf-1 binding, but not the binding of other Ets proteins, was found to greatly reduce TdT promoter activity. Although Elf-1 previously had been implicated in the inducible activation of genes in mature T and B cells, our results suggest that it also plays an important role in regulating genes during an early phase of lymphocyte development.
末端脱氧核苷酸转移酶(TdT)基因是分析淋巴细胞发育早期基因调控的一个有吸引力的模型。在先前的研究中,我们鉴定出一个称为D'的DNA元件,它对未成熟淋巴细胞中TdT启动子活性至关重要,以及两类D'结合因子,即Ikaros蛋白和Ets蛋白。在此,我们报告了对D'元件的详细突变分析,结果表明是Ets蛋白而非Ikaros蛋白激活TdT转录。由于多种Ets蛋白在发育中的淋巴细胞中表达且能够结合D'元件,因此利用DNA亲和层析来确定是否有一个Ets蛋白可能以独特的高亲和力结合D'元件,从而表明该蛋白是潜在的TdT激活剂。实际上,一种结合活性在来自D'亲和柱的高盐洗脱物中得到了极大富集。肽微测序显示富集的蛋白是Elf-1。免疫印迹分析证实,在核提取物中,Elf-1对D'序列的亲和力明显高于另一种Ets蛋白Ets-1。反式激活和表达研究支持了Elf-1在未成熟T细胞和B细胞中激活TdT转录的假说。最后,发现一个选择性降低Elf-1结合但不降低其他Ets蛋白结合的D'突变极大地降低了TdT启动子活性。尽管Elf-1此前被认为参与成熟T细胞和B细胞中基因的诱导性激活,但我们的结果表明它在淋巴细胞发育早期的基因调控中也发挥着重要作用。