Nonclassical Kinetics of Clonal yet Heterogeneous Enzymes

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초록

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.

키워드

MICHAELIS-MENTEN EQUATION; SINGLE; MOLECULES; HELICASE; NOISE
제목
Nonclassical Kinetics of Clonal yet Heterogeneous Enzymes
저자
Park, Seong Jun; Song, Sanggeun; Jeong, In-Chun; Koh, Hye Ran; Kim, Ji-Hyun; Sung, Jaeyoung
DOI
10.1021/acs.jpclett.7b01218
발행일
2017-07
유형
Article
저널명
The Journal of Physical Chemistry Letters
권
8
호
13
페이지
3152 ~ 3158