Department of Biochemistry, Eötvös University, Budapest, Hungary.
Nucleic Acids Res. 2010 Apr;38(7):e102. doi: 10.1093/nar/gkq014. Epub 2010 Jan 31.
Quantitative determination of enzymatic rates, processivity and mechanochemical coupling is a key aspect in characterizing nucleotide triphosphate (NTP)-driven nucleic acid motor enzymes, for both basic research and technological applications. Here, we present a streamlined analytical method suitable for the determination of all key functional parameters based on measurement of NTP hydrolysis during interaction of motor enzymes with the nucleic acid track. The proposed method utilizes features of kinetic time courses of NTP hydrolysis that have not been addressed in previous analyses, and also accounts for the effect of protein traps used in kinetic experiments on processivity. This analysis is suitable for rapid and precise assessment of the effects of mutations, physical conditions, binding partners and other effectors on the functioning of translocases, helicases, polymerases and other NTP-consuming processive nucleic acid motors.
定量测定酶的速率、连续性和机械化学偶联是表征核苷酸三磷酸(NTP)驱动的核酸马达酶的一个关键方面,无论是基础研究还是技术应用。在这里,我们提出了一种简化的分析方法,适用于基于与核酸轨道相互作用期间 NTP 水解测量来确定所有关键功能参数。所提出的方法利用了以前分析中未涉及的 NTP 水解动力学时间过程的特征,并且还考虑了在动力学实验中使用的蛋白质陷阱对连续性的影响。这种分析适用于快速、精确地评估突变、物理条件、结合伴侣和其他效应物对转位酶、解旋酶、聚合酶和其他消耗 NTP 的连续性核酸马达功能的影响。