首页> 美国卫生研究院文献>Biochemical Journal >Electron-paramagnetic-resonance measurements of the electron-transfer components of the reaction centre of Rhodopseudomonas viridis. Oxidation–reduction potentials and interactions of the electron acceptors
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Electron-paramagnetic-resonance measurements of the electron-transfer components of the reaction centre of Rhodopseudomonas viridis. Oxidation–reduction potentials and interactions of the electron acceptors

机译:绿假单胞菌反应中心电子传递成分的电子顺磁共振测量。氧化还原电位和电子受体的相互作用

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摘要

Oxidation–reduction potentiometry was carried out on Rhodopseudomonas viridis chromatophores. Measurements of e.p.r. signals of the semiquinone–iron type at g=1.82 have revealed a more complex situation than previously reported. The presence of three different components is indicated. The midpoint potential (Em) of the primary acceptor quinone/semiquinone couple was found to be approx. −165mV at pH10, with a pK being reached at around pH7.5. The primary acceptor also accepts a second electron with an Em of −525mV, but this redox transition exhibits a hysteresis effect. Interaction effects indicate the presence of another component with Em values at pH10 of approx. −165mV (pK reached at around pH7.5) for single reduction and −350mV (pK at pH10 or greater) for double reduction. It is suggested that this component is the secondary acceptor. Another semiquinone–iron-type component which gives a g=1.82 signal is also present. This component is distinguishable from the primary acceptor by its e.p.r. spectrum, which shows a double peak at g=1.82 and a gx line at g=1.76. This component has Em values at pH10 for single and double reduction of −15mV and approx. −150mV respectively. Both of these Em values are pH-dependent. The presence of an interaction between this component and the photoreduced primary acceptor indicates the close proximity of these components. However, the midpoint potential of this component indicates a function as a secondary electron-transport component rather than an electron acceptor in the reaction centre. The dependence of the bacteriopheophytin intermediate (I) doublet e.p.r. signal on the presence of the semiquinone–iron form of the primary acceptor is demonstrated. The midpoint potential of the I/I couple is estimated to be lower than −600mV.
机译:氧化还原电位法在绿假单胞菌色谱上进行。 e.p.r.的测量g = 1.82处的半醌-铁离子信号显示出比以前报道的情况更为复杂的情况。表明存在三种不同的成分。发现主要受体醌/半醌对的中点电势(Em)约为1。在pH10时为−165mV,在pH7.5左右达到pK。主受体也接受-525mV Em的第二个电子,但是该氧化还原跃迁表现出磁滞效应。相互作用效应表明存在另一种组分,在pH10时,Em值约为10。 -165mV(在pH7.5左右达到pK)进行单次还原,-350mV(pH10或更高进行pK)两次还原。建议该成分是次要受体。还存在另一个给出g = 1.82信号的半醌-铁型组分。该成分可通过其e.p.r与主要受体区分开。光谱,在g = 1.82处显示双峰,在g = 1.76处显示gx线。该成分在pH10时具有Em值,可进行一次和两次降低-15mV的电压(大约为0.5mV)。分别为−150mV。这两个Em值均与pH有关。该组分与光还原的主受体之间相互作用的存在表明这些组分非常接近。但是,该成分的中点电位表示起反应中心中的二次电子传输成分而不是电子受体的作用。细菌脱镁叶绿素中间体(I)的依从性信号表明存在主要受体的半醌-铁形式。 I / I -对的中点电势估计低于-600mV。

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