Job D, Durand R, Job C, Teissere M
Nucleic Acids Res. 1984 Apr 11;12(7):3303-19. doi: 10.1093/nar/12.7.3303.
Kinetics of RNA chain elongation catalyzed by wheat germ RNA polymerase II have been studied using various synthetic DNA templates in the presence of excess dinucleotide monophosphate primers. With single- or double-stranded homopolymer templates, the double reciprocal plots 1/(velocity) as a function of 1/(nucleotide substrate) exhibit positive, negative or no curvature. With poly(dAT) as template, the mechanism of nucleoside monophosphate incorporation into RNA is not the ping-pong kinetic mechanism which was derived for E. coli RNA polymerase (6). Noncomplementary nucleoside triphosphates inhibit RNA transcription allosterically. Cordycepin triphosphate behaves as ATP, and not only inhibits AMP incorporation but also that of UMP and GMP on appropriate templates. The reason for this complex kinetic behavior is not yet understood. Possibilities are raised that there are several nucleoside triphosphate binding sites on wheat germ RNA polymerase II, that additional nucleoside triphosphate dependent enzymatic activities are required for reaction to occur or that the Km value for incorporation of a given nucleoside monophosphate into RNA is dependent on the length of the RNA chain and/or the nucleotide sequence surrounding the complementary base on the DNA template.
利用各种合成DNA模板,在过量二核苷酸单磷酸引物存在的情况下,研究了小麦胚芽RNA聚合酶II催化的RNA链延伸动力学。对于单链或双链均聚物模板,以1/(速度)对1/(核苷酸底物)作图得到的双倒数图呈现正曲率、负曲率或无曲率。以聚(dAT)为模板时,单磷酸核苷掺入RNA的机制并非源自大肠杆菌RNA聚合酶的乒乓动力学机制(6)。非互补三磷酸核苷通过别构作用抑制RNA转录。三磷酸虫草素的作用与ATP相同,不仅抑制AMP的掺入,还能在合适模板上抑制UMP和GMP的掺入。这种复杂动力学行为的原因尚不清楚。可能的原因包括小麦胚芽RNA聚合酶II上存在多个三磷酸核苷结合位点、反应发生需要额外的依赖三磷酸核苷的酶活性,或者将特定单磷酸核苷掺入RNA的Km值取决于RNA链的长度和/或DNA模板上互补碱基周围的核苷酸序列。