Supercomputer technologies for structural-kinetic study of mechanisms of enzyme catalysis: A quantum-chemical description of aspartoacylase catalysis


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Abstract

The results of modeling of the complete catalytic cycle of aspartoacylase-catalyzed N-acetylaspartate hydrolysis by the combined quantum mechanics/molecular mechanics method and with the use of umbrella sampling replica-exchange molecular dynamics simulations are reported. It has been shown that the decrease in the high-energy barriers of rate-limiting stages is achieved through the preceding equilibrium stages, such as proton transfer and conformational changes. General features of the catalytic behavior of enzymes have been formulated.

About the authors

S. D. Varfolomeev

Emanuel Institute of Biochemical Physics; Moscow State University

Email: sofyalushchekina@gmail.com
Russian Federation, Moscow, 119991; Moscow, 119991

E. D. Kots

Emanuel Institute of Biochemical Physics; Moscow State University

Email: sofyalushchekina@gmail.com
Russian Federation, Moscow, 119991; Moscow, 119991

M. G. Khrenova

Moscow State University

Email: sofyalushchekina@gmail.com
Russian Federation, Moscow, 119991

S. V. Lushchekina

Emanuel Institute of Biochemical Physics

Author for correspondence.
Email: sofyalushchekina@gmail.com
Russian Federation, Moscow, 119991

A. V. Nemukhin

Emanuel Institute of Biochemical Physics; Moscow State University

Email: sofyalushchekina@gmail.com
Russian Federation, Moscow, 119991; Moscow, 119991

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