Spassky A, Busby S J, Danchin A, Buc H
Eur J Biochem. 1979 Aug 15;99(1):187-201. doi: 10.1111/j.1432-1033.1979.tb13245.x.
The fixation of tRNA to Escherichia coli RNA polymerase has been investigated. Bound and free tRNA have been separated and quantified after filtration through cellulose nitrate filters, centrifugation or sucrose gradients or electrophoresis in polyacrylamide gels. We detect no differences between the fixation of E. coli fMet-tRNAfMet, Met-tRNAmMet or uncharged unfractionated tRNA to RNA polymerase. Tight complexes, with a long residence time, are formed between core enzyme and tRNA with a dissociation constant of less than 1 nM. Complexes exist between tRNA and both monomer and dimer forms of the core enzyme. In the monomer complex, one tRNA is bound per alpha 2 beta beta' unit, whereas in the dimer complex only 0.5 tRNA molecule is fixed per alpha 2 beta beta' unit. In contrast to the core enzyme, very little tRNA fixes tightly to the holoenzyme at salt concentrations greater than 80 mM. At lower salt concentrations tRNA fixation results in a loss of sigma subunit from the holo enzyme to the resulting core enzyme where it binds tightly. DNA fixation reduces the binding of tRNA to RNA polymerase and tRNA fixation reduces the binding of DNA. However, binding of DNA to polymerase is not competitive with binding of tRNA, and ternary complexes between RNA polymerase, DNA and tRNA are shown to exist. Our results are discussed in relation to other studies concerning the effects of tRNA upon RNA polymerase.
对tRNA与大肠杆菌RNA聚合酶的结合进行了研究。通过硝酸纤维素滤膜过滤、离心、蔗糖梯度离心或聚丙烯酰胺凝胶电泳后,对结合态和游离态的tRNA进行了分离和定量。我们未检测到大肠杆菌fMet - tRNAfMet、Met - tRNAmMet或未分级的无电荷tRNA与RNA聚合酶的结合存在差异。核心酶与tRNA之间形成了紧密的复合物,其停留时间长,解离常数小于1 nM。tRNA与核心酶的单体和二聚体形式均存在复合物。在单体复合物中,每个α2ββ'单元结合一个tRNA,而在二聚体复合物中,每个α2ββ'单元仅固定0.5个tRNA分子。与核心酶不同的是,在盐浓度大于80 mM时,很少有tRNA能紧密结合到全酶上。在较低盐浓度下,tRNA的结合导致全酶中的σ亚基丢失,转而结合到形成的核心酶上,且结合紧密。DNA的结合会降低tRNA与RNA聚合酶的结合,而tRNA的结合会降低DNA的结合。然而,DNA与聚合酶的结合与tRNA的结合不具有竞争性,并且已证明存在RNA聚合酶、DNA和tRNA之间的三元复合物。我们的结果将与其他关于tRNA对RNA聚合酶影响的研究进行讨论。