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首页> 外文期刊>The Journal of biological chemistry >Communication between Thiamin Cofactors in the Escherichia coli Pyruvate Dehydrogenase Complex E1 Component Active Centers
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Communication between Thiamin Cofactors in the Escherichia coli Pyruvate Dehydrogenase Complex E1 Component Active Centers

机译:大肠杆菌丙酮酸脱氢酶络合物E1组分活性中心的硫胺辅因子之间的沟通

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Kinetic, spectroscopic, and structural analysis tested the hypothesis that a chain of residues connecting the 4′-aminopyrimidine N1′ atoms of thiamin diphosphates (ThDPs) in the two active centers of the Escherichia coli pyruvate dehydrogenase complex E1 component provides a signal transduction pathway. Substitution of the three acidic residues (Glu571, Glu235, and Glu237) and Arg606 resulted in impaired binding of the second ThDP, once the first active center was filled, suggesting a pathway for communication between the two ThDPs. 1) Steady-state kinetic and fluorescence quenching studies revealed that upon E571A, E235A, E237A, and R606A substitutions, ThDP binding in the second active center was affected. 2) Analysis of the kinetics of thiazolium C2 hydrogen/deuterium exchange of enzyme-bound ThDP suggests half-of-the-sites reactivity for the E1 component, with fast (activated site) and slow exchanging sites (dormant site). The E235A and E571A variants gave no evidence for the slow exchanging site, indicating that only one of two active sites is filled with ThDP. 3) Titration of the E235A and E237A variants with methyl acetylphosphonate monitored by circular dichroism suggested that only half of the active sites were filled with a covalent predecarboxylation intermediate analog. 4) Crystal structures of E235A and E571A in complex with ThDP revealed the structural basis for the spectroscopic and kinetic observations and showed that either substitution affects cofactor binding, despite the fact that Glu235 makes no direct contact with the cofactor. The role of the conserved Glu571 residue in both catalysis and cofactor orientation is revealed by the combined results for the first time.
机译:动力学,光谱和结构分析测试了将硫胺二磷酸盐(THDP)的4'-氨基嘧啶N1'原子的残基链中的残留物中的残留物中的残留物在大肠杆菌丙酮酸脱氢酶复合物复合E1组分的两个活性中心中提供了一种信号转导通路。一旦填充第一活跃中心,就填充了三种酸性残基(Glu571,Glu235和Glu237)和Arg606的取代导致了第二个THDP的结合受损,这表明两个THDP之间的通信途径。 1)稳态动力学和荧光猝灭研究表明,在E571A,E235A,E237A和R606A取代时,在第二个活性中心中的THDP结合受到影响。 2)噻唑鎓C2氢气/氘交换的动力学分析,酶结合的THDP提出了E1组分的半场反应性,快速(活化位点)和缓慢交换位点(休眠部位)。 E235A和E571A变体对缓慢交换位点没有证据表明,只有两个有源网站中只有一个填充THDP。 3)通过圆形二色性监测的E235A和E237A变体的滴定与乙酰氨基膦酸盐表明,只有一半的活性位点填充有共价前羧化中间体类似物。 4)E235A和E571A的晶体结构与THDP的复合物揭示了光谱和动力学观察的结构基础,并且表明替换会影响Cofactor结合,尽管Glu235没有与辅因子直接接触。保守的Glu571残留在催化作用和辅因子方向中的作用是第一次合并的结果揭示的。

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