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克隆性但异质性酶的非经典动力学

Nonclassical Kinetics of Clonal yet Heterogeneous Enzymes.

作者信息

Park Seong Jun, Song Sanggeun, Jeong In-Chun, Koh Hye Ran, Kim Ji-Hyun, Sung Jaeyoung

机构信息

National Creative Research Initiative Center for Chemical Dynamics in Living Cells, Chung-Ang University , Seoul 06974, Korea.

National Institute of Innovative Functional Imaging, Chung-Ang University , Seoul 06974, Korea.

出版信息

J Phys Chem Lett. 2017 Jul 6;8(13):3152-3158. doi: 10.1021/acs.jpclett.7b01218. Epub 2017 Jun 26.

Abstract

Enzyme-to-enzyme variation in the catalytic rate is ubiquitous among single enzymes created from the same genetic information, which persists over the lifetimes of living cells. Despite advances in single-enzyme technologies, the lack of an enzyme reaction model accounting for the heterogeneous activity of single enzymes has hindered a quantitative understanding of the nonclassical stochastic outcome of single enzyme systems. Here we present a new statistical kinetics and exactly solvable models for clonal yet heterogeneous enzymes with possibly nonergodic state dynamics and state-dependent reactivity, which enable a quantitative understanding of modern single-enzyme experimental results for the mean and fluctuation in the number of product molecules created by single enzymes. We also propose a new experimental measure of the heterogeneity and nonergodicity for a system of enzymes.

摘要

由相同遗传信息产生的单个酶之间,催化速率的酶与酶之间的差异在活细胞的整个生命周期中普遍存在。尽管单酶技术取得了进展,但缺乏一个能解释单酶异质性活性的酶反应模型,阻碍了对单酶系统非经典随机结果的定量理解。在此,我们提出了一种新的统计动力学以及适用于具有可能非遍历状态动力学和状态依赖反应性的克隆但异质酶的精确可解模型,这使得我们能够对现代单酶实验结果进行定量理解,即单个酶产生的产物分子数量的均值和波动。我们还提出了一种针对酶系统的异质性和非遍历性的新实验测量方法。

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