Dekker J, van Oosterhout J A, van der Vliet P C
Laboratory for Physiological Chemistry, Utrecht University, The Netherlands.
Mol Cell Biol. 1996 Aug;16(8):4073-80. doi: 10.1128/MCB.16.8.4073.
The cellular transcription factor nuclear factor I (NFI) stimulates adenovirus DNA replication by up to 50-fold. The NFI DNA binding domain (NFI-BD) is sufficient for stimulation and interacts with the viral DNA polymerase, thereby recruiting the precursor terminal protein-DNA polymerase complex (pTP-pol) to the origin of replication. The mechanism of DNA binding by NFI is unknown. To examine DNA binding and stimulation of adenovirus DNA replication by NFI-BD in more detail, we generated a series of deletion mutants and show that the DNA binding domain of NFI consists of two subdomains: a highly basic N-terminal domain that binds nonspecifically to DNA and a C-terminal domain that binds specifically but with very low affinity to the NFI recognition site. Both of these subdomains stimulate DNA replication, although not to the same extent as the intact DNA binding domain. The N-terminal domain has an alpha-helical structure, as shown by circular dichroism spectroscopy. The C-terminal domain interacts with the pTP-pol complex and is able to recruit the pTP-pol complex to DNA, which leads to pTP-pol-dependent stimulation of replication. The N-terminal domain also stimulates replication in a pTP-pol-dependent manner and enhances binding of pTP-pol to DNA. Since we could not detect a direct protein-protein interaction between pTP-pol and the N-terminal domain, we suggest that this domain stimulates replication by inducing structural changes in the DNA.
细胞转录因子核因子I(NFI)可将腺病毒DNA复制刺激高达50倍。NFI DNA结合结构域(NFI-BD)足以产生刺激作用,并与病毒DNA聚合酶相互作用,从而将前体末端蛋白-DNA聚合酶复合物(pTP-pol)募集到复制起点。NFI与DNA结合的机制尚不清楚。为了更详细地研究NFI-BD对腺病毒DNA复制的DNA结合和刺激作用,我们构建了一系列缺失突变体,并表明NFI的DNA结合结构域由两个亚结构域组成:一个高度碱性的N端结构域,它与DNA非特异性结合;一个C端结构域,它与NFI识别位点特异性结合,但亲和力非常低。这两个亚结构域都能刺激DNA复制,尽管程度与完整的DNA结合结构域不同。圆二色光谱显示,N端结构域具有α螺旋结构。C端结构域与pTP-pol复合物相互作用,能够将pTP-pol复合物募集到DNA上,从而导致pTP-pol依赖的复制刺激。N端结构域也以pTP-pol依赖的方式刺激复制,并增强pTP-pol与DNA的结合。由于我们未检测到pTP-pol与N端结构域之间存在直接的蛋白质-蛋白质相互作用,我们认为该结构域通过诱导DNA的结构变化来刺激复制。