Crystal structures of phosphoketolase: thiamine diphosphate-dependent dehydration mechanism.
نویسندگان
چکیده
Thiamine diphosphate (ThDP)-dependent enzymes are ubiquitously present in all organisms and catalyze essential reactions in various metabolic pathways. ThDP-dependent phosphoketolase plays key roles in the central metabolism of heterofermentative bacteria and in the pentose catabolism of various microbes. In particular, bifidobacteria, representatives of beneficial commensal bacteria, have an effective glycolytic pathway called bifid shunt in which 2.5 mol of ATP are produced per glucose. Phosphoketolase catalyzes two steps in the bifid shunt because of its dual-substrate specificity; they are phosphorolytic cleavage of fructose 6-phosphate or xylulose 5-phosphate to produce aldose phosphate, acetyl phosphate, and H(2)O. The phosphoketolase reaction is different from other well studied ThDP-dependent enzymes because it involves a dehydration step. Although phosphoketolase was discovered more than 50 years ago, its three-dimensional structure remains unclear. In this study we report the crystal structures of xylulose 5-phosphate/fructose 6-phosphate phosphoketolase from Bifidobacterium breve. The structures of the two intermediates before and after dehydration (α,β-dihydroxyethyl ThDP and 2-acetyl-ThDP) and complex with inorganic phosphate give an insight into the mechanism of each step of the enzymatic reaction.
منابع مشابه
Snapshot Structures of Thiamine-Dependent Dehydration Reaction by Phosphoketolase from Bifi dobacterium breve
Thiamine diphosphate functions as a cofactor in enzymes that catalyze essential reactions in metabolic pathways of all organisms. Phosphoketolase is a thiamine diphosphate-dependent key enzyme in the catabolism of sugar in various microbes. In particular, this enzyme is indispensable for unusually high effi ciency of energy production of the glycolytic pathway of benefi cial commensal bacteria,...
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Enzymes that use the cofactor thiamin diphosphate (ThDP, 1), the biologically active form of vitamin B(1), are involved in numerous metabolic pathways in all organisms. Although a theory of the cofactor's underlying reaction mechanism has been established over the last five decades, the three-dimensional structures of most major reaction intermediates of ThDP enzymes have remained elusive. Here...
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عنوان ژورنال:
- The Journal of biological chemistry
دوره 285 44 شماره
صفحات -
تاریخ انتشار 2010