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用闪光测定叶绿体中的H⁺/e⁻比率

Determination of H+/e- ratios in chloroplasts with flashing light.

作者信息

Fowler C F, Kok B

出版信息

Biochim Biophys Acta. 1976 Mar 12;423(3):510-23. doi: 10.1016/0005-2728(76)90204-8.

Abstract

Using a rapid pH electrode, measurements were made of the flash-induced proton transport in isolated spinach chloroplasts. To calibrate the system, we assumed that in the presence of ferricyanide and in steady-state flashing light, each flash liberates from water one proton per reaction chain. We concluded that with both ferricyanide and methylviologen as acceptors two protons per electron are translocated by the electron transport chain connecting Photosystem II and I. With methyl viologen but not with ferricyanide as an acceptor, two additional protons per electron are taken up due to Photosystem I activity. One of these latter protons is translocated to the inside of the thylakoid while the other is taken up in H2O2 formation. Assuming that the proton released during water splitting remains inside the thylakoid, we compute H+/e- ratios of 3 and 4 for ferricyanide and methylviologen, respectively. In continuous light of low intensity, we obtained the same H+/e- ratios. However, with higher intensities where electron transport becomes rate limited by the internal pH, the H+/e- ratio approached 2 as a limit for both acceptors. A working model is presented which includes two sites of proton translocation, one between the photoacts, the other connected to Photosystem I, each of which translocates two protons per electron. Each site presents a approximately 30 ms diffusion barrier to proton passage which can be lowered by uncouplers to 6-10 ms.

摘要

使用快速pH电极,对分离的菠菜叶绿体中闪光诱导的质子转运进行了测量。为了校准系统,我们假设在铁氰化物存在且处于稳态闪光的情况下,每个闪光在每个反应链中从水中释放出一个质子。我们得出结论,以铁氰化物和甲基紫精作为受体时,连接光系统II和I的电子传递链每传递一个电子会转运两个质子。以甲基紫精而非铁氰化物作为受体时,由于光系统I的活性,每传递一个电子还会额外摄取两个质子。其中一个质子被转运到类囊体内部,而另一个质子则用于形成过氧化氢。假设水分解过程中释放的质子保留在类囊体内部,我们计算出以铁氰化物和甲基紫精作为受体时的H⁺/e⁻比值分别为3和4。在低强度的连续光照下,我们得到了相同的H⁺/e⁻比值。然而,在较高强度下,电子传递速率受内部pH限制,两种受体的H⁺/e⁻比值都接近2作为极限值。本文提出了一个工作模型,该模型包括两个质子转运位点,一个位于光反应之间,另一个与光系统I相连,每个位点每传递一个电子转运两个质子。每个位点对质子通过呈现约30毫秒的扩散屏障,解偶联剂可将其降低至6 - 10毫秒。

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