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Theoretical studies on the common catalytic mechanism of transketolase by using simplified models
Affiliation:1. Laboratory of Quantum and Statistical Physics, LR18ES18, Faculty of Sciences of Monastir, Tunisia;2. Physics Department, Faculty of Science, Princess Norah bint Abdul Rahman University, Riyadh, Saudi Arabia;3. Department of Physics, Faculty of Science, King AbdulAziz University, Rabigh, Saudi Arabia
Abstract:Transketolase is a convenient model system to study enzymatic thiamin catalysis. By using density functional theory (DFT) method, the transfer mechanism of a 2-carbon fragment between a donor ketose X5P and an acceptor aldose R5P catalyzed by transketolase has been studied on simplified models. The calculation results indicate that the whole reaction cycle contains several proton transfer processes as well as Csingle bondC bond formation and cleavage steps. Each Csingle bondC bond formation or cleavage step is always accompanied by a proton transfer process, which follows a concerted but asynchronous mechanism. The Csingle bondC bond formation is always prior to the proton transfer, and the Csingle bondC bond cleavage is always later than proton transfer, suggesting that the Csingle bondC bond ligation facilitates the proton transfer, and proton transfer promotes the Csingle bondC bond cleavage. In the first half- and second half-reactions, the energy barriers of Csingle bondC bond formations are always higher than those of Csingle bondC bond cleavages. The 4-amino group of cofactor ThDP and histidine residue can act as the proton donor/acceptor during the catalytic reaction.
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