Geisberg J V, Lee W S, Berk A J, Ricciardi R P
Department of Microbiology, School of Dental Medicine, University of Pennsylvania, Philadelphia 19104.
Proc Natl Acad Sci U S A. 1994 Mar 29;91(7):2488-92. doi: 10.1073/pnas.91.7.2488.
The 289R E1A protein of adenovirus transactivates a variety of viral and cellular promoters through protein-protein interactions. In earlier studies, mutational analyses of the E1A transactivating domain identified residues that are critical for transactivation and implied that the zinc finger region of the transactivating domain binds a transcription factor. Also, the E1A activation domain was found to bind to the TATA box binding protein (TBP) in vitro. Here, we tested the significance of the E1A-TBP interaction for E1A transactivation by analyzing the effects of conservative substitutions at each of the 49 residues of the E1A activation domain. Seven of the substitutions significantly diminished TBP binding in vitro. All of these were in the zinc finger region and were defective for transactivation in vivo. The perfect correlation between reduced TBP binding and transactivation argues strongly that a direct interaction between the E1A activation domain and TBP is critical to the mechanism of E1A activation. This genetic analysis leads us to further suggest that another factor, which is limiting, is also necessary for E1A-mediated transactivation.
腺病毒的289R E1A蛋白通过蛋白质-蛋白质相互作用反式激活多种病毒和细胞启动子。在早期研究中,对E1A反式激活结构域的突变分析确定了对反式激活至关重要的残基,并暗示反式激活结构域的锌指区域结合一种转录因子。此外,还发现E1A激活结构域在体外与TATA盒结合蛋白(TBP)结合。在此,我们通过分析E1A激活结构域49个残基中每个残基的保守取代的影响,测试了E1A-TBP相互作用对E1A反式激活的重要性。其中七个取代显著降低了体外TBP结合。所有这些都在锌指区域,并且在体内反式激活方面存在缺陷。TBP结合减少与反式激活之间的完美相关性有力地表明,E1A激活结构域与TBP之间的直接相互作用对E1A激活机制至关重要。这种遗传学分析使我们进一步表明,另一个有限的因子对于E1A介导的反式激活也是必需的。