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肺炎克雷伯菌固氮酶:假定的氟化铍-ADP过渡态复合物的形成与稳定性

Klebsiella pneumoniae nitrogenase: formation and stability of putative beryllium fluoride-ADP transition state complexes.

作者信息

Clarke T A, Yousafzai F K, Eady R R

机构信息

Nitrogen Fixation Laboratory, John Innes Centre, Norwich, U.K.

出版信息

Biochemistry. 1999 Aug 3;38(31):9906-13. doi: 10.1021/bi9904353.

Abstract

Incubation of the MoFe protein (Kp1) and Fe protein (Kp2), the component proteins of Klebsiella pneumoniae nitrogenase, with BeF(3)(-) and MgADP resulted in a progressive inhibition of nitrogenase activity. We have shown that at high Kp2 to Kp1 molar ratios this inhibition is due to the formation of an inactive complex with a stoichiometry corresponding to Kp1.{Kp2.(MgADP.BeFx)2}2. At lower Kp2:Kp1 ratios, an equilibrium between this 2:1 complex, the partially active 1:1 Kp1.Kp2.(MgADP. BeFx)2 complex, and active nitrogenase components was demonstrated. The inhibition was reversible since incubation of the 1:1 complex in the absence of MgADP and beryllium resulted in complete restoration of activity over 30 h. Under pseudo-first-order conditions with regard to nitrogenase components and MgADP, the kinetics of the rate of inhibition with increasing concentrations of BeF(3)(-) showed a square dependence on [BeF(3)(-)], consistent with the binding of two Be atoms by Kp2 in the complex. Analytical fplc gel filtration profiles of Kp1.Kp2 incubation mixtures at equilibrium resolved the 2:1 complex and the 1:1 complex from free Kp1. Deconvolution of the equilibrium profiles gave concentrations of the components allowing constants for their formation of 2.1 x 10(6) and 5.6 x 10(5) M(-1) to be calculated for the 1:1 and 2:1 complexes, respectively. When the active site concentration of the different species was taken into account, values for the two constants were the same, indicating the two binding sites for Kp2 are the same for Kp1 with one or both sites unoccupied. The value for K(1) we obtain from this study is comparable with the value derived from pre-steady-state studies of nitrogenase. Analysis of the elution profile obtained on gel filtration of a 1:1 ratio incubation mixture containing 20 microM nitrogenase components showed 97% of the Kp2 present initially to be complexed. These data provide the first unequivocal demonstration that Fe protein preparations which may contain up to 50% of a species of Fe protein defective in electron transfer is nevertheless fully competent in complex formation with MoFe protein.

摘要

肺炎克雷伯氏菌固氮酶的组成蛋白钼铁蛋白(Kp1)和铁蛋白(Kp2)与三氟铍酸根离子(BeF₃⁻)和MgADP一起温育,会导致固氮酶活性逐渐受到抑制。我们已经表明,在高Kp2与Kp1摩尔比时,这种抑制作用是由于形成了一种化学计量比对应于Kp1.{Kp2.(MgADP.BeFx)₂}₂的无活性复合物。在较低的Kp2:Kp1比值下,证明了这种2:1复合物、部分活性的1:1 Kp1.Kp2.(MgADP.BeFx)₂复合物与活性固氮酶组分之间存在平衡。这种抑制作用是可逆的,因为在没有MgADP和铍的情况下温育1:1复合物,30小时内活性完全恢复。在关于固氮酶组分和MgADP的准一级条件下,随着BeF₃⁻浓度增加抑制速率的动力学显示出对[BeF₃⁻]的平方依赖性,这与复合物中Kp2结合两个Be原子一致。平衡时Kp1.Kp2温育混合物的分析型快速蛋白质液相色谱凝胶过滤图谱将2:1复合物和1:1复合物与游离的Kp1分离。对平衡图谱进行反卷积得到各组分的浓度,从而分别计算出1:1和2:1复合物形成常数为2.1×10⁶和5.6×10⁵ M⁻¹。当考虑不同物种的活性位点浓度时,这两个常数的值相同,表明Kp2的两个结合位点对于Kp1是相同的,其中一个或两个位点未被占据。我们从这项研究中获得的K₁值与从固氮酶稳态前研究得出的值相当。对含有20微摩尔固氮酶组分的1:1比例温育混合物进行凝胶过滤得到的洗脱图谱分析表明,最初存在的Kp2中有97%形成了复合物。这些数据首次明确证明,可能含有高达50%电子转移有缺陷的一种铁蛋白的铁蛋白制剂,在与钼铁蛋白形成复合物方面仍然完全有能力。

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