Lenzmeier B A, Baird E E, Dervan P B, Nyborg J K
Department of Biochemistry and Molecular Biology, Colorado State University, Fort Collins, CO, 80523-1870, USA.
J Mol Biol. 1999 Aug 27;291(4):731-44. doi: 10.1006/jmbi.1999.2969.
The human T-cell leukemia virus type-1 (HTLV-I)-encoded Tax protein enhances viral gene transcription through interaction with three repeated DNA elements located in the viral promoter. These elements, called viral CREs, are composed of an off-consensus eight base-pair cyclic AMP response element (CRE), immediately flanked by sequences that are rich in guanine and cytosine residues. Recent biochemical experiments have demonstrated that in the presence of the cellular protein CREB, Tax directly binds the viral CRE G+C-rich sequences via interaction with the minor groove. To determine the functional significance of the Tax-DNA interaction, we synthesized minor groove-binding pyrrole-imidazole polyamides which bind specifically to the G+C-rich sequences in the viral CREs. At concentrations where the polyamides specifically protect the G+C-rich sequences from MPE:Fe cleavage, the polyamides block the Tax-DNA interaction. At precisely these same concentrations, the polyamides specifically inhibit Tax transactivation in vitro, without altering CREB-activated transcription or basal transcription from the same promoter. Together, these data provide strong evidence that Tax-viral CRE interaction is essential for Tax function in vitro, and suggest that targeted disruption of the Tax-DNA minor groove interaction with polyamides may provide a novel approach for inhibiting viral replication in vivo.
人类T细胞白血病病毒1型(HTLV-I)编码的Tax蛋白通过与位于病毒启动子中的三个重复DNA元件相互作用来增强病毒基因转录。这些元件称为病毒CRE,由一个与共有序列不一致的八碱基对环磷酸腺苷反应元件(CRE)组成,其紧邻富含鸟嘌呤和胞嘧啶残基的序列。最近的生化实验表明,在细胞蛋白CREB存在的情况下,Tax通过与小沟相互作用直接结合病毒CRE富含G+C的序列。为了确定Tax与DNA相互作用的功能意义,我们合成了特异性结合病毒CRE中富含G+C序列的小沟结合吡咯-咪唑聚酰胺。在聚酰胺特异性保护富含G+C的序列免受MPE:Fe切割的浓度下,聚酰胺会阻断Tax与DNA的相互作用。恰恰在这些相同的浓度下,聚酰胺在体外特异性抑制Tax反式激活,而不改变CREB激活的转录或来自同一启动子的基础转录。总之,这些数据提供了强有力的证据,表明Tax与病毒CRE的相互作用对于Tax在体外的功能至关重要,并表明用聚酰胺靶向破坏Tax与DNA的小沟相互作用可能为体内抑制病毒复制提供一种新方法。