首页> 外文OA文献 >Electron-transfer studies involving flavodoxin and a natural redox partner, the iron protein of nitrogenase. Conformational constraints on protein-protein interactions and the kinetics of electron transfer within the protein complex.
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Electron-transfer studies involving flavodoxin and a natural redox partner, the iron protein of nitrogenase. Conformational constraints on protein-protein interactions and the kinetics of electron transfer within the protein complex.

机译:电子转移研究涉及黄酮毒素和天然氧化还原伴侣(固氮酶的铁蛋白)。蛋白质-蛋白质相互作用和蛋白质复合体内电子转移动力学的构象约束。

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摘要

The kinetics of electron-transfer reactions involving flavodoxins from Klebsiella pneumoniae (KpFld), Azotobacter chroococcum (AcFld), Anacystis nidulans (AnFld) and Megasphaera elsdenii (MeFld), the free, MgADP-bound and MgATP-bound forms of the Fe protein component of nitrogenase from K. pneumoniae [Kp2, Kp2(MgADP)2 and Kp2(MgATP)2] and Na2S2O4 were studied by stopped-flow spectrophotometry. Kinetic evidence was obtained for the formation of binary protein complexes involving KpFldSQ (semiquinone) with either Kp2(MgADP)2 (KD = 49 microM) or Kp2(MgATP)2 (KD = 13 microM) but not with Kp2 (KD greater than 730 microM). The binding of 2MgATP or 2MgADP to Kp2 therefore not only shifts the midpoint potential (Em) of the [4Fe-4S] centre from -200 mV to -320 mV or -350 mV respectively but also changes the affinity of Kp2 for KpFldSQ. Thermodynamically unfavourable electron from Kp2(MgADP)2 and Kp2(MgATP)2 to KpFldSQ occurs within the protein complexes with k = 1.2 s-1 (delta E = -72 mV) and 0.5 s-1 (delta E = -120 mV) respectively. Although AcFldSQ is reduced by Kp2, Kp2(MgADP)2 and Kp2(MgATP)2 (k = 8 x 10(3), 2.4 x 10(3) and 9 x 10(2) M-1.s-1 respectively), protein-complex formation is weak in each case (KD greater than 700 microM). Electron transfer in the physiologically important and thermodynamically favourable direction from Kp2FldHQ (hydroquinone) and AcFldHQ to Kp2ox.(MgADP)2 (the state of Kp2 that accepts electrons from FldHQ in the catalytic cycle of nitrogenase) is rapid (k greater than 10(6) M-1.s-1). The second-order rate constants for the reduction of KpFldSQ, AcFldSQ, AnFldSQ and MeFldSQ by SO2.- (active reductant formed by the predissociation of S2O4(2-) ion) exhibited the linear free-energy relationship predicted by the Marcus theory of electron transfer.
机译:电子转移反应的动力学涉及肺炎克雷伯氏菌(KpFld),嗜铬固氮菌(AcFld),构巢猕猴桃(AnFld)和大白粉病(MeFld),游离的,与MgADP结合和与MgATP结合的Fe蛋白组分的黄酮毒素。通过停止流光度法研究了肺炎克雷伯菌的固氮酶[Kp2,Kp2(MgADP)2和Kp2(MgATP)2]和Na2S2O4的含量。获得了包含KpFldSQ(半醌)与Kp2(MgADP)2(KD = 49 microM)或Kp2(MgATP)2(KD = 13 microM)但不与Kp2(KD大于730)形成二元蛋白质复合物的动力学证据。 microM)。因此,2MgATP或2MgADP与Kp2的结合不仅将[4Fe-4S]中心的中点电势(Em)从-200 mV转移到-320 mV或-350 mV,而且还改变了Kp2对KpFldSQ的亲和力。从Kp2(MgADP)2和Kp2(MgATP)2到KpFldSQ的热力学不利电子出现在蛋白质复合物中,k = 1.2 s-1(δE = -72 mV)和0.5 s-1(δE = -120 mV)分别。尽管AcFldSQ减少了Kp2,Kp2(MgADP)2和Kp2(MgATP)2(分别为k = 8 x 10(3),2.4 x 10(3)和9 x 10(2)M-1.s-1) ,每种情况下蛋白质复合物的形成都很弱(KD大于700 microM)。电子从Kp2FldHQ(对苯二酚)和AcFldHQ沿生理重要且热力学有利的方向快速转移到Kp2ox。(MgADP)2(Kp2的状态,在固氮酶的催化循环中接受来自FldHQ的电子)(k大于10(6) )M-1.s-1)。 SO2(由S2O4(2-)离子预离解形成的活性还原剂)还原KpFldSQ,AcFldSQ,AnFldSQ和MeFldSQ的二级速率常数显示出电子的马库斯理论所预测的线性自由能关系传递。

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    Thorneley, R N; Deistung, J;

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  • 年度 1988
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  • 正文语种 en
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