Petri V, Hsieh M, Jamison E, Brenowitz M
Department of Biochemistry, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Biochemistry. 1998 Nov 10;37(45):15842-9. doi: 10.1021/bi981072u.
The equilibrium binding and association kinetics of the Saccharomyces cerevisiae TATA Binding Protein (TBP) to the E4 and Major Late promoters of adenovirus (TATATATA and TATAAAAG, respectively), have been directly compared by quantitative DNase I titration and quench-flow "footprinting". The equilibrium binding of TBP to both promoters is described by the equilibrium TBP + DNA"TATA" left and right arrow TBP-DNA"TATA". The salt dependence of TBP binding to both promoters is identical within experimental error while the temperature dependence differs significantly. The observed rate of association follows simple second-order kinetics over the TBP concentration ranges investigated. The salt and temperature dependencies of the second-order association rate constants for TBP binding the two promoters reflect the dependencies determined by equilibrium binding. The TBP-E4 promoter interaction is entropically driven at low temperature and enthalpically driven at high temperature while the TBP-Major Late promoter reaction is entropically driven over virtually the entire temperature range investigated. These data suggest that the reaction mechanisms of TBP-promoter interactions are TATA sequence-specific and provide for differential regulation of promoters as a function of environmental variables.
通过定量DNase I滴定和速冷流动“足迹法”,直接比较了酿酒酵母TATA结合蛋白(TBP)与腺病毒E4启动子和主要晚期启动子(分别为TATATATA和TATAAAAG)的平衡结合及缔合动力学。TBP与这两个启动子的平衡结合由平衡式TBP + DNA“TATA”⇌TBP-DNA“TATA”描述。在实验误差范围内,TBP与两个启动子结合的盐依赖性相同,而温度依赖性则有显著差异。在所研究的TBP浓度范围内,观察到的缔合速率遵循简单的二级动力学。TBP与两个启动子结合的二级缔合速率常数的盐依赖性和温度依赖性反映了由平衡结合所确定的依赖性。TBP与E4启动子的相互作用在低温下由熵驱动,在高温下由焓驱动,而TBP与主要晚期启动子的反应在几乎整个研究温度范围内均由熵驱动。这些数据表明,TBP与启动子相互作用的反应机制具有TATA序列特异性,并能根据环境变量对启动子进行差异调节。