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Determination of Pre-Steady-State Rate Constants on the Escherichia coli Pyruvate Dehydrogenase Complex Reveals That Loop Movement Controls the Rate-Limiting Step

机译:大肠杆菌丙酮酸脱氢酶复合物的稳态前速率常数的确定揭示了环运动控制速率限制步骤

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摘要

Spectroscopic identification and characterization of covalent and noncovalent intermediates on large enzyme complexes is an exciting and challenging area of modern enzymology. The Escherichia coli pyruvate dehydrogenase multienzyme complex (PDHc), consisting of multiple copies of enzymic components and coenzymes, performs the oxidative decarboxylation of pyruvate to acetyl-CoA and is central to carbon metabolism linking glycolysis to the Krebs cycle. On the basis of earlier studies, we hypothesized that the dynamic regions of the Elp component, which undergo a disorder-order transition upon substrate binding to thiamin diphosphate (ThDP), play a critical role in modulation of the catalytic cycle of PDHc. To test our hypothesis, we kinetically characterized ThDP-bound covalent intermediates on the Elp component, and the lipoamide-bound covalent intermediate on the E2p component in PDHc and in its variants with disrupted active-site loops. Our results suggest that formation of the first covalent predecarboxylation intermediate, C2α-lactylthiamin diphosphate (LThDP), is rate limiting for the series of steps culminating in acetyl-CoA formation. Substitutions in the active center loops produced variants with up to 900-fold lower rates of formation of the LThDP, demonstrating that these perturbations directly affected covalent catalysis. This rate was rescued by up to 5-fold upon assembly to PDHc of the E401K variant. The Elp loop dynamics control covalent catalysis with ThDP and are modulated by PDHc assembly, presumably by selection of catalytically competent loop conformations. This mechanism could be a general feature of 2-oxoacid dehydrogenase complexes because such interfacial dynamic regions are highly conserved.
机译:大型酶复合物的共价和非共价中间体的光谱鉴定和表征是现代酶学一个令人兴奋且充满挑战的领域。大肠杆菌丙酮酸脱氢酶多酶复合物(PDHc),由多个拷贝的酶成分和辅酶组成,将丙酮酸氧化脱羧成乙酰辅酶A,是碳糖代谢与糖酵解连接到克雷布斯循环的关键。在较早的研究基础上,我们假设Elp组分的动态区域在底物与硫胺素二磷酸酯(ThDP)结合后经历无序变化,在调节PDHc的催化循环中起关键作用。为了检验我们的假设,我们对PDHc及其变体中具有破坏活性位点环的Elp组分上的ThDP结合的共价中间体和E2p组分上的脂酰胺结合的共价中间体进行了动力学表征。我们的结果表明,第一个共价预脱羧中间体C2α-乙酰硫胺素二磷酸(LThDP)的形成限制了乙酰辅酶A形成过程中一系列步骤的速率。活性中心环中的取代产生的变体的LThDP形成速率降低了900倍,表明这些干扰直接影响了共价催化。组装至E401K变体的PDHc时,该速率最多可挽救5倍。 Elp环动力学控制着ThDP的共价催化作用,并由PDHc组装调节,大概是通过选择具有催化作用的环构象来实现的。该机理可能是2-含氧酸脱氢酶复合物的一般特征,因为这种界面动态区域是高度保守的。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第45期|18644-18655|共12页
  • 作者单位

    Department of Chemistry, Rutgers the State University, Newark, New Jersey 07102, United States;

    Department of Chemistry, Rutgers the State University, Newark, New Jersey 07102, United States;

    Department of Chemistry, Rutgers the State University, Newark, New Jersey 07102, United States;

    Department of Chemistry, Rutgers the State University, Newark, New Jersey 07102, United States;

    Department of Chemistry, Rutgers the State University, Newark, New Jersey 07102, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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