Brannon Angela R, Maresca Julia A, Boeke Jef D, Basrai Munira A, McBride Alison A
Laboratory of Viral Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892-0455, USA.
Proc Natl Acad Sci U S A. 2005 Feb 22;102(8):2998-3003. doi: 10.1073/pnas.0407818102. Epub 2005 Feb 14.
The papillomavirus E2 protein functions in viral transcriptional regulation, DNA replication, and episomal genome maintenance. Viral genomes are maintained in dividing cells by attachment to mitotic chromosomes by means of the E2 protein. To investigate the chromosomal tethering function of E2, plasmid stability assays were developed in Saccharomyces cerevisiae to determine whether the E2 protein could maintain plasmids containing the yeast autonomous replication sequence replication element but with the centromeric element replaced by E2-binding sites. E2 expression was not sufficient to maintain such plasmids, but plasmid stability could be rescued by expression of the mammalian protein Brd4. In the presence of both Brd4 and E2 proteins, plasmids with multiple E2-binding sites were stable without selection. S. cerevisiae encodes a homolog of Brd4 named Bdf1 that does not contain the C-terminal domain that interacts with the E2 protein. A fusion protein of Bdf1 and the Brd4 C-terminal "tail" could support E2-mediated plasmid maintenance in yeast. Using a panel of mutated E2 proteins, we determined that plasmid stability required the ability of E2 to bind DNA and to interact with Brd4 and mammalian mitotic chromosomes but did not require its replication initiation and transactivation functions. The S. cerevisiae-based plasmid maintenance assays described here are invaluable tools for dissecting mechanisms of episomal viral genome replication and screening for additional host protein factors involved in plasmid maintenance.
乳头瘤病毒E2蛋白在病毒转录调控、DNA复制和游离基因组维持中发挥作用。病毒基因组通过E2蛋白附着于有丝分裂染色体而在分裂细胞中得以维持。为了研究E2的染色体拴系功能,在酿酒酵母中开展了质粒稳定性测定,以确定E2蛋白是否能够维持含有酵母自主复制序列复制元件但着丝粒元件被E2结合位点取代的质粒。E2的表达不足以维持此类质粒,但哺乳动物蛋白Brd4的表达可挽救质粒稳定性。在同时存在Brd4和E2蛋白的情况下,具有多个E2结合位点的质粒在无选择压力时是稳定的。酿酒酵母编码一种名为Bdf1的Brd4同源物,其不包含与E2蛋白相互作用的C末端结构域。Bdf1与Brd4 C末端“尾巴”的融合蛋白能够在酵母中支持E2介导的质粒维持。通过使用一组突变的E2蛋白,我们确定质粒稳定性需要E2结合DNA以及与Brd4和哺乳动物有丝分裂染色体相互作用的能力,但不需要其复制起始和反式激活功能。本文所述的基于酿酒酵母的质粒维持测定是剖析游离病毒基因组复制机制以及筛选参与质粒维持的其他宿主蛋白因子的宝贵工具。