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Observation of thiamin-bound intermediates and microscopic rate constants for their interconversion on 1-deoxy-D-xylulose 5-phosphate synthase: 600-fold rate acceleration of pyruvate decarboxylation by D-glyceraldehyde-3-phosphate

机译:为他们的互硫胺素结合的中间体和微观速率常数的对1-脱氧d木酮糖-5-磷酸合酶观察:丙酮酸脱羧的600倍速率加速度由d-甘油醛-3-磷酸

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摘要

The thiamin diphosphate (ThDP)-dependent enzyme 1-deoxy-D-xylulose 5-phosphate (DXP) synthase carries out the condensation of pyruvate as 2-hydroxyethyl donor with D-glyceraldehyde-3-phosphate (D-GAP) as acceptor forming DXP. Toward understanding catalysis of this potential anti-infective drug target, we examined the pathway of the enzyme using steady state and pre-steady state kinetic methods. It was found that DXP synthase stabilizes the ThDP-bound pre-decarboxylation intermediate formed between ThDP and pyruvate (C2α-lactylThDP or LThDP) in the absence of D-GAP, while addition of D-GAP enhanced the rate of decarboxylation by at least 600-fold. We postulate that decarboxylation requires formation of a ternary complex with both LThDP and D-GAP bound, and the central enzyme-bound enamine reacts with D-GAP to form DXP. This appears to be the first study of a ThDP enzyme where the individual rate constants could be evaluated by time-resolved CD spectroscopy, and the results could have relevance to other ThDP enzymes in which decarboxylation is coupled to a ligation reaction. The acceleration of the rate of decarboxylation of enzyme-bound LThDP in the presence of D-GAP suggests a new approach to inhibitor design.
机译:硫胺素二磷酸(ThDP)依赖性酶1-脱氧-D-木酮糖5-磷酸(DXP)合酶进行丙酮酸作为2-羟乙基供体的缩合与D-甘油醛-3-磷酸(D-GAP)的形成DXP。为了了解这种潜在的抗感染药物靶标的催化作用,我们使用稳态和稳态前动力学方法检查了酶的途径。发现在没有D-GAP的情况下DXP合酶可稳定ThDP与丙酮酸之间形成的ThDP结合的预脱羧中间产物(C2α-lactylThDP或LThDP),而添加D-GAP可使脱羧速率提高至少600 -折。我们假设脱羧需要形成与LThDP和D-GAP结合的三元复合物,并且与酶结合的中央烯胺与D-GAP反应形成DXP。这似乎是ThDP酶的首次研究,其中可以通过时间分辨CD光谱法评估各个速率常数,并且该结果可能与脱羧与连接反应偶联的其他ThDP酶有关。在存在D-GAP的情况下,酶结合的LThDP的脱羧速率的加快提示了抑制剂设计的新方法。

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