Lu H P, Xun L, Xie X S
Pacific Northwest National Laboratory, William R. Wiley Environmental Molecular Sciences Laboratory, Richland, WA 99352, USA.
Science. 1998 Dec 4;282(5395):1877-82. doi: 10.1126/science.282.5395.1877.
Enzymatic turnovers of single cholesterol oxidase molecules were observed in real time by monitoring the emission from the enzyme's fluorescent active site, flavin adenine dinucleotide (FAD). Statistical analyses of single-molecule trajectories revealed a significant and slow fluctuation in the rate of cholesterol oxidation by FAD. The static disorder and dynamic disorder of reaction rates, which are essentially indistinguishable in ensemble-averaged experiments, were determined separately by the real-time single-molecule approach. A molecular memory phenomenon, in which an enzymatic turnover was not independent of its previous turnovers because of a slow fluctuation of protein conformation, was evidenced by spontaneous spectral fluctuation of FAD.
通过监测酶的荧光活性位点黄素腺嘌呤二核苷酸(FAD)的发射,实时观察了单个胆固醇氧化酶分子的酶促周转。对单分子轨迹的统计分析表明,FAD催化胆固醇氧化的速率存在显著且缓慢的波动。在整体平均实验中基本无法区分的反应速率的静态无序和动态无序,通过实时单分子方法分别确定。FAD的自发光谱波动证明了一种分子记忆现象,即由于蛋白质构象的缓慢波动,酶促周转并非独立于其先前的周转。