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Interrogating the activities of conformational deformed enzyme by single-molecule fluorescence-magnetic tweezers microscopy

机译:用单分子荧光-磁镊子显微镜探究构象变形酶的活性

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摘要

Characterizing the impact of fluctuating enzyme conformation on enzymatic activity is critical in understanding the structure–function relationship and enzymatic reaction dynamics. Different from studying enzyme conformations under a denaturing condition, it is highly informative to manipulate the conformation of an enzyme under an enzymatic reaction condition while monitoring the real-time enzymatic activity changes simultaneously. By perturbing conformation of horseradish peroxidase (HRP) molecules using our home-developed single-molecule total internal reflection magnetic tweezers, we successfully manipulated the enzymatic conformation and probed the enzymatic activity changes of HRP in a catalyzed H2O2–amplex red reaction. We also observed a significant tolerance of the enzyme activity to the enzyme conformational perturbation. Our results provide a further understanding of the relation between enzyme behavior and enzymatic conformational fluctuation, enzyme–substrate interactions, enzyme–substrate active complex formation, and protein folding–binding interactions.
机译:表征波动的酶构象对酶活性的影响对于理解结构-功能关系和酶反应动力学至关重要。与研究变性条件下的酶构象不同,在同时监测实时酶活性变化的同时,在酶促反应条件下操纵酶的构象非常有用。通过使用我们自行开发的单分子全内反射磁镊子干扰辣根过氧化物酶(HRP)分子的构象,我们成功地操纵了酶的构象,并探测了HRP在催化的H2O2-复红反应中的酶活性变化。我们还观察到酶活性对酶构象扰动的显着耐受性。我们的结果进一步了解了酶行为与酶构象波动,酶-底物相互作用,酶-底物活性复合物形成以及蛋白质折叠-结合相互作用之间的关系。

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