首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Anaerobic purification, characterization and preliminary mechanistic study of recombinant nitrous oxide reductase from Achromobacter cycloclastes
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Anaerobic purification, characterization and preliminary mechanistic study of recombinant nitrous oxide reductase from Achromobacter cycloclastes

机译:环状无色杆菌重组厌氧菌还原酶的厌氧纯化,表征及初步机理研究

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An overexpression system for nitrous oxide reductase (N(2)OR), an enzyme that catalyzes the conversion of N(2)O to N(2) and H(2)O, has been developed in Achromobacter cycloclastes. Anaerobically purified A. cycloclastes recombinant N(2)OR (AcN(2)OR) has on average 4.5 Cu and 1.2 S per monomer. Upon reduction by methyl viologen, AcN(2)OR displays a high specific activity: 124 U/mg at 25 degrees C. Anaerobically purified AcN(2)OR displays a unique absorption spectrum. UV-visible and EPR spectra, combined with kinetics studies, indicate that the as-purified form of the enzyme is predominately a mixture of the fully-reduced Cu(Z)=[4Cu(I)] state and the Cu(Z)=[3Cu(I).Cu(II)] state, with the latter readily reducible by reduced forms of viologens. CD spectra of the as-purified AcN(2)OR over a range of pH values reveal perturbations of the protein conformation induced by pH variations, although the principal secondary structure elements are largely unaltered. Further, the activity of AcN(2)OR in D(2)O is significantly decreased compared with that in H(2)O, indicative of a significant solvent isotope effect on N(2)O reduction. These data are in good agreement with conclusions reached in recent studies on the effect of pH on catalysis by N(2)OR [K. Fujita, D.M. Dooley, Inorg. Chem. 46 (2007) 613-615].
机译:一氧化二氮还原酶(N(2)OR),一种催化N(2)O转化为N(2)和H(2)O的酶的过表达系统已在无色杆菌环礁中发展。厌氧纯化的曲霉重组N(2)OR(AcN(2)OR)平均每个单体具有4.5 Cu和1.2S。通过甲基紫精还原后,AcN(2)OR显示出高的比活:在25摄氏度下为124 U / mg。厌氧纯化的AcN(2)OR显示出独特的吸收光谱。紫外可见光谱和EPR光谱结合动力学研究表明,纯化后的酶主要是完全还原的Cu(Z)= [4Cu(I)]状态和Cu(Z)= [3Cu(I).Cu(II)]状态,后者可通过还原的紫精减少。纯化的AcN(2)OR在一定pH值范围内的CD光谱显示,虽然主要的二级结构元素基本保持不变,但pH值变化引起的蛋白质构象扰动。此外,与H(2)O中的相比,D(2)O中的AcN(2)OR的活性显着降低,这表明溶剂同位素对N(2)O的还原具有重要作用。这些数据与近期研究中有关pH对N(2)OR催化作用的影响的结论[K.藤田杜格(Dooley),Inorg。化学46(2007)613-615]。

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