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Kinetics and template-dependency of ribonucleic acid synthesis by bacterial ribonucleic acid polymerase.

机译:细菌核糖核酸聚合酶合成核糖核酸的动力学和模板依赖性。

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摘要

The rate of RNA synthesis catalysed by DNA-dependent RNA polymerase shows a Michealis-Menten-type saturation curve with increasing template concentration. However, the apparent Km is proportional to enzyme concentration, indicating that the reaction does not obey a simple kinetic scheme. The action of inhibitors also indicates a more complex interaction between the enzyme and the DNA template; many inhibitors of RNA synthesis either decrease Vmax. without affecting Km, or increase Km without affecting Vmax. All of these observations can be accounted for quantitatively by a reaction pathway in which the non-specific binding sites of the viral DNA template inhibit competitively the binding of the enzyme to the initiation sites. In terms of this pathway the two classes of inhibitors of RNA synthesis must then act predominantly either on the rate of elongation or on the availability of the binding sites respectively.
机译:DNA依赖性RNA聚合酶催化的RNA合成速率随模板浓度的增加显示Michealis-Menten型饱和曲线。但是,表观Km与酶浓度成正比,表明该反应不遵循简单的动力学方案。抑制剂的作用还表明酶和DNA模板之间的相互作用更为复杂。许多RNA合成抑制剂均可降低Vmax。而不影响Km,或增加Km而不影响Vmax。所有这些观察都可以通过反应途径进行定量解释,在该反应途径中,病毒DNA模板的非特异性结合位点竞争性地抑制了酶与起始位点的结合。就该途径而言,两类RNA合成抑制剂然后必须分别主要作用于延伸速率或结合位点的可用性。

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