Glucksmann-Kuis M A, Dai X, Markiewicz P, Rothman-Denes L B
Department of Molecular Genetics and Cell Biology, University of Chicago, Illinois 60637, USA.
Cell. 1996 Jan 12;84(1):147-54. doi: 10.1016/s0092-8674(00)81001-6.
Bacteriophage N4 virion RNA polymerase transcription of double-stranded promoter-containing DNAs requires supercoiled template and E. coli single-stranded DNA-binding protein (EcoSSB); other single-stranded DNA-binding proteins cannot substitute. The DNA determinants of virion RNA polymerase binding at the promoter comprise a small template-strand hairpin. The requirement for EcoSSB is surprising, since single-stranded DNA-binding proteins destabilize hairpin structures. DNA footprinting of EcoSSB on wild-type and mutant promoters indicates that EcoSSB stabilizes the template-strand hairpin owing to the hairpin-loop sequences. Other single-stranded DNA-binding proteins destabilize the promoter hairpin, explaining the specificity of EcoSSB activation. We conclude that EcoSSB activates transcription by providing the appropriate DNA structure for polymerase binding. The existence of small hairpins stable to single-stranded protein binding suggests a novel mechanism that provides structural determinants for specific recognition in single-stranded DNA transactions by an otherwise nonspecific DNA-binding protein.
噬菌体N4病毒粒子RNA聚合酶对含双链启动子的DNA进行转录需要超螺旋模板和大肠杆菌单链DNA结合蛋白(EcoSSB);其他单链DNA结合蛋白无法替代。病毒粒子RNA聚合酶在启动子处结合的DNA决定因素包括一个小的模板链发夹结构。对EcoSSB的需求令人惊讶,因为单链DNA结合蛋白会使发夹结构不稳定。EcoSSB对野生型和突变型启动子的DNA足迹分析表明,由于发夹环序列,EcoSSB稳定了模板链发夹结构。其他单链DNA结合蛋白会使启动子发夹结构不稳定,这解释了EcoSSB激活的特异性。我们得出结论,EcoSSB通过为聚合酶结合提供合适的DNA结构来激活转录。对单链蛋白结合稳定的小发夹结构的存在表明了一种新机制,该机制为由非特异性DNA结合蛋白进行的单链DNA交易中的特异性识别提供结构决定因素。