Seidman S, Surzycki S J, DeLorbe W, Gussin G N
Biochemistry. 1979 Jul 24;18(15):3363-71. doi: 10.1021/bi00582a024.
Transcription of Adenovirus 2 DNA (Ad 2 DNA) by wheat germ RNA polymerase II in vitro satisfies criteria that have been used to establish that Escherichia coli or coliphage transcription in vitro is initiated at true promoters. (1) Wheat germ RNA polymerase forms highly stable complexes at specific sites on Ad 2 DNA, with a Kassoc of (4--5) X 10(10) M-1. (2) Electron microscopic visualization of enzyme bound to Ad 2 DNA reveals the location of eight strong binding sites, at least five of which appear to correspond to promoters that have been identified in studies of Ad 2 transcription in vivo [Evans, R. M., Fraser, N., Ziff, E., Weber, J., Wilson, M., & Darnell, J.E. (1977) Cell 12, 733--739; Berk, A.J., & Sharp, P.A. (1977) Cell 12, 45--55; Weinmann, R., & Aiello, L. O. (1978) Proc. Natl. Acad. Sci. U.S.A. 75, 1662--1666]. (3) Transcription of Ad 2 DNA from preformed complexes with wheat germ polymerase is capable of escaping the action of rifamycin AF/013 and is relatively resistant to polyriboinosinic acid. In addition, our results are consistent with a two-state model for the interaction of wheat germ RNA polymerase with Ad 2 DNA, indicating that the mechansisms of transcription initiation and promoter-site selection in eucaryotes may be very similar to mechanisms elucidated in procaryotic systems.
小麦胚芽RNA聚合酶II在体外对腺病毒2 DNA(Ad 2 DNA)的转录满足用于确定大肠杆菌或噬菌体体外转录在真正启动子处起始的标准。(1)小麦胚芽RNA聚合酶在Ad 2 DNA的特定位点形成高度稳定的复合物,其结合常数Kassoc为(4 - 5)×10¹⁰ M⁻¹。(2)电子显微镜观察与Ad 2 DNA结合的酶揭示了八个强结合位点的位置,其中至少五个似乎对应于在体内Ad 2转录研究中已鉴定的启动子[埃文斯,R.M.,弗雷泽,N.,齐夫,E.,韦伯,J.,威尔逊,M.,& 达内尔,J.E.(1977年)《细胞》12卷,733 - 739页;伯克,A.J.,& 夏普,P.A.(1977年)《细胞》12卷,45 - 55页;魏曼,R.,& 艾洛,L.O.(1978年)《美国国家科学院院刊》75卷,1662 - 1666页]。(3)从小麦胚芽聚合酶的预形成复合物对Ad 2 DNA进行转录能够避开利福霉素AF/013的作用,并且对聚肌苷酸相对抗性。此外,我们的结果与小麦胚芽RNA聚合酶与Ad 2 DNA相互作用的双态模型一致,表明真核生物中转录起始和启动子位点选择的机制可能与原核生物系统中阐明的机制非常相似。