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The reactivity of lactyl-oxythiamin implies the role of the amino-pyrimidine in thiamin catalyzed decarboxylation
Institution:1. Pharmaceutical Chemistry, School of Pharmacy, North-West University, Private Bag X6001, Potchefstroom 2520, South Africa;2. Centre of Excellence for Pharmaceutical Sciences, North-West University, Private Bag X6001, Potchefstroom 2520, South Africa;3. Molecular Sciences Institute, School of Chemistry, University of the Witwatersrand, Private Bag 3, PO WITS 2050, South Africa;1. Post-Graduate and Research Department of Chemistry, Sri Ramakrishna Mission Vidyalaya College of Arts and Science, Coimbatore – 641 020, Tamil Nadu, India;2. Department of Chemistry/Nanoscience & Technology, Karunya University, Coimbatore – 641114, Tamil Nadu, India;3. Division of Physics, School of Advanced Science, VIT University, Chennai – 600 127, India;1. Department of Chemistry, Faculty of Science (Men''s Campus), Al-Azhar University, Nasr City, 11884, Cairo, Egypt;2. Department of Chemistry, College of Science, King Faisal University, Al-Hasa, 31982, Saudi Arabia;3. Department of Chemistry, 110 Science Place (Rm. 156), University of Saskatchewan, Saskatoon, SK, S7N 5C9, Canada;4. Department of Chemistry, Faculty of Science, Sultan Qaboos University, P.O. Box 36, Al Khod, Muscat, Oman;1. Department of Physics, Faculty of Arts and Sciences, Harran University, 63000, Şanlıurfa, Turkey;2. Department of Medical Services and Techniques, Vocational High School of Health Services, Giresun University, 28100, Giresun, Turkey;3. Department of Chemistry, Faculty of Arts and Sciences, Gaziantep University, 27310, Gaziantep, Turkey;4. Department of Food Technology, Akçakoca Vocational School, University of Düzce, 81650, Akçakoca/Düzce, Turkey
Abstract:It has previously been established that the deprotonated amino substituent of the pyrimidine of thiamin diphosphate (ThDP) acts as an internal base to accept the C2H of the thiazolium in ThDP-dependent enzymes. The amino group has also been implicated in assisting the departure of the aldehydic product formed after loss of CO2 from ketoacid substrates. However, the potential role for the pyrimidine amino group in the key decarboxylation step has not been assessed. Oxythiamin contains a hydroxyl group in place of the pyrimidine amino group in thiamin, providing a basis for comparison of reactivity. Lactyl-oxythiamin (LOTh), the conjugate of pyruvic acid and oxythiamin was prepared by condensation of ethyl pyruvate and hydroxyl-protected oxythiamin followed by deprotection and acidic hydrolysis of the ethyl ester. The rate constants observed for the decarboxylation of LOTh in neutral and acidic solutions are about four times smaller than those for the corresponding compound that contains the amino group, lactylthiamin. The difference in reactivity is consistent with the amino group’s participation in facilitating the decarboxylation step by allowing a competitive addition pathway that produces bicarbonate and has implications for the corresponding enzymic reaction.
Keywords:Oxythiamin  Thiamin  Lactyl-oxythiamin synthesis  Lactyl-oxythiamin decarboxylation  Aminopyrimidine function  2-ketoacid decarboxylases  Acyl carbanion equivalent  Nucleophilic carbene  Hydrogen bond
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