Hayes S, Shiyanov P, Chen X, Raychaudhuri P
Department of Biochemistry and Molecular Biology, University of Illinois at Chicago, 60612, USA.
Mol Cell Biol. 1998 Jan;18(1):240-9. doi: 10.1128/MCB.18.1.240.
The transcription factor E2F1 is believed to be involved in the regulated expression of the DNA replication genes. To gain insights into the transcriptional activation function of E2F1, we looked for proteins in HeLa nuclear extracts that bind to the activation domain of E2F1. Here we show that DDB, a putative DNA repair protein, associates with the activation domain of E2F1. DDB was identified as a heterodimeric protein (48 and 127 kDa) that binds to UV-damaged DNA. We show that the UV-damaged-DNA binding activity from HeLa nuclear extracts can associate with the activation domain of E2F1. Moreover, the 48-kDa subunit of DDB, synthesized in vitro, binds to a fusion protein of E2F1 depending on the C-terminal activation domain. The interaction between DDB and E2F1 can also be detected by coimmunoprecipitation experiments. Immunoprecipitation of an epitope-tagged DDB from cell extracts resulted in the coprecipitation of E2F1. In a reciprocal experiment, immunoprecipitates of E2F1 were found to contain DDB. Fractionation of HeLa nuclear extracts also revealed a significant overlap in the elution profiles of E2F1 and DDB. For instance, DDB, which does not bind to the E2F sites, was enriched in the high-salt fractions containing E2F1 during chromatography through an E2F-specific DNA affinity column. We also observed evidence for a functional interaction between DDB and E2F1 in living cells. For instance, expression of DDB specifically stimulated E2F1-activated transcription. In addition, the transcriptional activation function of a heterologous transcription factor containing the activation domain of E2F1 was stimulated by coexpression of DDB. Moreover, DDB expression could overcome the retinoblastoma protein (Rb)-mediated inhibition of E2F1-activated transcription. The results suggest that this damaged-DNA binding protein can function as a transcriptional partner of E2F1. We speculate that the damaged-DNA binding function of DDB, besides repair, might serve as a negative regulator of E2F1-activated transcription, as damaged DNA will sequester DDB and make it unavailable for E2F1. Furthermore, the binding of DDB to damaged DNA might be involved in downregulating the replication genes during growth arrest induced by damaged DNA.
转录因子E2F1被认为参与DNA复制基因的调控表达。为深入了解E2F1的转录激活功能,我们在HeLa细胞核提取物中寻找与E2F1激活域结合的蛋白质。在此我们表明,一种假定的DNA修复蛋白DDB与E2F1的激活域相关联。DDB被鉴定为一种异源二聚体蛋白(48 kDa和127 kDa),它能结合紫外线损伤的DNA。我们发现HeLa细胞核提取物中紫外线损伤DNA结合活性可与E2F1的激活域相关联。此外,体外合成的DDB的48 kDa亚基,依赖于C端激活域与E2F1融合蛋白结合。DDB与E2F1之间的相互作用也可通过共免疫沉淀实验检测到。从细胞提取物中免疫沉淀表位标记的DDB会导致E2F1的共沉淀。在反向实验中,发现E2F1的免疫沉淀物中含有DDB。对HeLa细胞核提取物进行分级分离还揭示了E2F1和DDB洗脱图谱存在显著重叠。例如,不与E2F位点结合的DDB在通过E2F特异性DNA亲和柱进行层析时,在含有E2F1的高盐级分中得到富集。我们还观察到在活细胞中DDB与E2F1之间存在功能相互作用的证据。例如,DDB的表达特异性刺激E2F1激活的转录。此外,共表达DDB可刺激含有E2F1激活域的异源转录因子的转录激活功能。而且,DDB的表达可克服视网膜母细胞瘤蛋白(Rb)介导的对E2F1激活转录的抑制。结果表明这种损伤DNA结合蛋白可作为E2F1的转录伴侣发挥作用。我们推测,DDB的损伤DNA结合功能除了用于修复外,可能作为E2F1激活转录的负调节因子,因为损伤DNA会隔离DDB,使其无法与E2F1结合。此外,DDB与损伤DNA的结合可能参与在由损伤DNA诱导的生长停滞期间下调复制基因。