Hesselbach B A, Nakada D
J Virol. 1977 Dec;24(3):746-60. doi: 10.1128/JVI.24.3.746-760.1977.
Bacteriophage T7-coded inhibitor of Escherichia coli RNA polymerase, termed I protein, was purified from an inactive E. coli RNA polymerase-I protein complex isolated from phage T7-infected cells. A molecular weight of about 7,000 to 9,000 was assigned to the purified I protein by acrylamide-sodium dodecyl sulfate gel electrophoresis, Sephadex G-50 gel filtration, and glycerol gradient centrifugation analysis. I protein inhibits initiation of RNA synthesis by directly binding to the RNA polymerase holoenzyme and prevents the binding of the enzyme to the promoter sites on the template T7 DNA. However, once a highly stable transcriptional preinitiation complex between RNA polymerase holoenzyme and T7 DNA is formed at the promoter site on T7 DNA in the absence of nucleoside triphosphates, I protein does not inhibit the initiation of RNA synthesis by this preformed complex upon addition of nucleoside triphosphates. RNA synthesis by the core RNA polymerase and the binding of core RNA polymerase with template DNA are not inhibited by I protein, although a partial association between the core enzyme and I protein can be observed. I protein does not bind to sigma factor or T7 DNA. Therefore, binding of I protein with the RNA polymerase, which results in the inhibition of initiation of RNA synthesis, requires the presence of sigma factor in the RNA polymerase holoenzyme form.
从噬菌体T7感染的细胞中分离出的无活性大肠杆菌RNA聚合酶-I蛋白复合物中纯化出了噬菌体T7编码的大肠杆菌RNA聚合酶抑制剂,即I蛋白。通过丙烯酰胺-十二烷基硫酸钠凝胶电泳、葡聚糖凝胶G-50凝胶过滤和甘油梯度离心分析,确定纯化的I蛋白分子量约为7000至9000。I蛋白通过直接与RNA聚合酶全酶结合来抑制RNA合成的起始,并阻止该酶与模板T7 DNA上的启动子位点结合。然而,一旦在没有核苷三磷酸的情况下,RNA聚合酶全酶与T7 DNA在T7 DNA的启动子位点形成了高度稳定的转录前起始复合物,加入核苷三磷酸后,I蛋白就不会抑制这种预先形成的复合物的RNA合成起始。I蛋白不抑制核心RNA聚合酶的RNA合成以及核心RNA聚合酶与模板DNA的结合,尽管可以观察到核心酶与I蛋白之间存在部分结合。I蛋白不与σ因子或T7 DNA结合。因此,I蛋白与RNA聚合酶的结合导致RNA合成起始的抑制,这需要RNA聚合酶全酶形式中存在σ因子。