De Mercoyrol L, Job C, Job D
Centre de Biochimie et de Biologie Moléculaire, Marseille, France.
Biochem J. 1989 Jun 15;260(3):795-801. doi: 10.1042/bj2600795.
Incubation of purified wheat-germ RNA polymerase II with poly[d(A-T)] template, Mn2+, U-A dinucleoside monophosphate primer and UTP substrate resulted in catalytic formation of the trinucleoside diphosphate U-A-U, in accordance with the results of previous studies. Both Sarkosyl and heparin inhibited completely and immediately (within less than 1 min) U-A-U synthesis, if either of these compounds was added to the assays during the progress of the reaction. This behaviour is in marked contrast to that reported for single-step addition reactions catalysed by Escherichia coli RNA polymerase on the same template [Sylvester & Cashel (1980) Biochemistry 19, 1069-1074]. However, treatment of the transcription complexes with Sarkosyl or heparin for periods sufficient to abolish U-A-U formation completely did not suppress completely the ability of such complexes to elongate RNA chains. Hence, the effect of Sarkosyl or heparin on the rate of U-A-U synthesis was predominantly due to change in the rate (or in the mechanism) of trinucleotide product release by the transcription complexes. Furthermore, once U-A-U synthesis has begun on the poly[d(A-T)] template, the transcription complexes became resistant to the action of a competitor DNA such as poly[d(G-C)]. The results are consistent with a model where at least a sizeable fraction of the enzyme molecules remains associated with the DNA template upon formation of a single phosphodiester bond.
将纯化的小麦胚芽RNA聚合酶II与聚[d(A-T)]模板、Mn2+、U-A二核苷单磷酸引物和UTP底物一起温育,结果催化形成了三核苷二磷酸U-A-U,这与先前的研究结果一致。如果在反应进行过程中将Sarkosyl或肝素中的任何一种添加到测定中,它们都会完全且立即(在不到1分钟内)抑制U-A-U的合成。这种行为与大肠杆菌RNA聚合酶在相同模板上催化的单步加成反应的报道形成鲜明对比[Sylvester & Cashel (1980) Biochemistry 19, 1069-1074]。然而,用Sarkosyl或肝素处理转录复合物足够长的时间以完全消除U-A-U的形成,并没有完全抑制这种复合物延长RNA链的能力。因此,Sarkosyl或肝素对U-A-U合成速率的影响主要是由于转录复合物释放三核苷酸产物的速率(或机制)发生了变化。此外,一旦在聚[d(A-T)]模板上开始合成U-A-U,转录复合物就会对诸如聚[d(G-C)]的竞争DNA的作用产生抗性。这些结果与一个模型一致,即在形成单个磷酸二酯键后,至少相当一部分酶分子仍与DNA模板结合。