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Michaelis menten enzyme kinetics - Crossref

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Last Updated: 23 April 2022

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Quantifying the flux as the driving force for nonequilibrium dynamics and thermodynamics in non-Michaelis–Menten enzyme kinetics

Significance As the underlying landscape and the curling flux, the driving factors for a nonequilibrium dynamical system have been theoretically identified. However, curl flux's experimental determination remains problematic. We conducted a single-molecule reaction dynamics analysis of horseradish peroxidase, which resulted in significant deviations from the conventional Michaelis–Menten behavior. With entropy production, we also determined the thermodynamic driving force by chemical potentials and dissipation cost.

Source link: https://doi.org/10.1073/pnas.1819572117


Research on Students' Understanding of Michaelis-Menten Kinetics and Enzyme Inhibition: Implications for Instruction and Learning

ABSTRACT We provide a summary of the findings from an education research project that investigated student motivations related to Michaelis-Menten enzyme kinetics and enzyme inhibition. The results from this project have been published according to the updated consensus model of pedagogical content knowledge, a framework from science education that emphasizes the knowledge and skills needed to move content knowledge into teaching.

Source link: https://doi.org/10.35459/tbp.2019.000108

* Please keep in mind that all text is summarized by machine, we do not bear any responsibility, and you should always check original source before taking any actions

* Please keep in mind that all text is summarized by machine, we do not bear any responsibility, and you should always check original source before taking any actions