Sylvester J E, Cashel M
Biochemistry. 1980 Mar 18;19(6):1069-74. doi: 10.1021/bi00547a004.
Incubation of RNA polymerase with poly[d(A-T)n] template results in a binary enzyme-DNA complex. Further addition of the dinucleotide UpA and [alpha-32P]UTP results in catalytic formation of the labeled trinucleotide UpApU until substrate exhaustion. In contrast, incubation of binary enzyme-DNA complexes with ApU and [alpha-32P]ATP results in labeled ApUpA formation to an extent that is stoichiometric with the amount of enzyme present despite an excess of substrates. The occurrence of ApUpA in a stable DNA-enzyme-RNA ternary complex is shown by gel exclusion chromatography, Millipore filtration, and the ability of ternary complexes to support subsequent RNA chain elongation. Radioactivity is not bound to Millipore filters when purified, labeled ApUpA is added to enzyme-DNA binary complexes. Hence, phosphodiester bond formation is required for stable ternary complex formation. The absence of the delta subunit of RNA polymerase or the addition of rifampicin to the reaction before ribonucleotide substrates results in catalytic ApUpA formation instead of stable ternary complexes.
将RNA聚合酶与聚[d(A - T)n]模板一起温育会形成二元酶 - DNA复合物。进一步添加二核苷酸UpA和[α - 32P]UTP会催化形成标记的三核苷酸UpApU,直至底物耗尽。相比之下,将二元酶 - DNA复合物与ApU和[α - 32P]ATP一起温育会导致标记的ApUpA形成,其形成程度与存在的酶量呈化学计量关系,尽管底物过量。凝胶排阻色谱法、密理博过滤以及三元复合物支持后续RNA链延伸的能力表明,稳定的DNA - 酶 - RNA三元复合物中存在ApUpA。当将纯化的标记ApUpA添加到酶 - DNA二元复合物中时,放射性不会与密理博滤膜结合。因此,稳定的三元复合物形成需要磷酸二酯键的形成。RNA聚合酶的δ亚基缺失或在核糖核苷酸底物之前向反应中添加利福平会导致催化形成ApUpA而不是稳定的三元复合物。