Lutz P, Kedinger C
Institut de Génétique et de Biologie Moléculaire et Cellulaire, Université Louis Pasteur, C.U. de Strasbourg, France.
J Virol. 1996 Mar;70(3):1396-405. doi: 10.1128/JVI.70.3.1396-1405.1996.
The adenovirus major late promoter is strongly activated after the onset of viral DNA replication. Sequence elements located downstream of the major later promoter start site have previously been shown to be essential for this activation. Two proteins (DEF-A and DEF-B) bind to these elements in a late-phase-dependent manner. DEF-B has been identified as the product of adenovirus intermediate gene IVa2 (pIVa2) (C. Tribouley, P. Lutz, A. Staub, and C. Kedinger, J. Virol. 68:4450-4457, 1994). Here we show that pIVa2, while monomeric in solution, binds to its recognition sequence as a dimer and that two 20-residue amphipathic alpha helices play an essential role in this DNA-binding activity. Attempts to purify DEF-A have failed, but its chromatographic behavior, together with its immunological properties, established that pIVa2 is also a component of this heteromeric protein. In addition, the time course of pIVa2 synthesis during infection correlated with simultaneous detection of the binding of both DEF-A and DEF-B complexes to the downstream elements. Finally, as revealed by immunomicroscopy, pIVa2 is targeted to the nucleus, where it distributes to restricted locations in the nucleoplasm, as well as to the nucleoli. Altogether, these results demonstrate that pIVa2 plays a critical role in the transition from the early to the late phase of the lytic cycle. Furthermore, pIVa2 may serve additional functions yet to be uncovered, as suggested by its presence within the cell nucleolus.
腺病毒主要晚期启动子在病毒DNA复制开始后被强烈激活。先前已表明,位于主要晚期启动子起始位点下游的序列元件对于这种激活至关重要。两种蛋白质(DEF-A和DEF-B)以晚期依赖性方式结合到这些元件上。DEF-B已被鉴定为腺病毒中间基因IVa2(pIVa2)的产物(C. Tribouley、P. Lutz、A. Staub和C. Kedinger,《病毒学杂志》68:4450 - 4457,1994)。在此我们表明,pIVa2在溶液中为单体,但作为二聚体与其识别序列结合,并且两个20个残基的两亲性α螺旋在这种DNA结合活性中起关键作用。纯化DEF-A的尝试失败了,但其色谱行为及其免疫学特性表明pIVa2也是这种异源蛋白的一个组分。此外,感染期间pIVa2合成的时间进程与DEF-A和DEF-B复合物与下游元件结合的同时检测相关。最后,免疫显微镜显示,pIVa2定位于细胞核,在核质以及核仁中分布于特定位置。总之,这些结果表明pIVa2在裂解周期从早期到晚期的转变中起关键作用。此外,正如其在细胞核仁中的存在所暗示的,pIVa2可能还有尚未被发现的其他功能。