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类囊体磷酸化与非循环电子传递的研究。

Studies on thylakoid phosphorylation and noncyclic electron transport.

作者信息

Jennings R C, Zucchelli G

出版信息

Arch Biochem Biophys. 1986 Apr;246(1):108-13. doi: 10.1016/0003-9861(86)90454-6.

Abstract

The effect of thylakoid phosphorylation on noncyclic electron transport in spinach chloroplasts was investigated by measuring both the reduction of nicotinamide adenine dinucleotide phosphate (NADP) and the steady-state redox level of the primary electron acceptor quinone of photosystem II (Q) during electron flow to NADP. These data are compared with the theoretical predictions for an electron transport model which relates both the redox levels of Q and the photosystem II optical cross section to the overall velocity of noncyclic electron flow. It is demonstrated that transfer of 15-20% of the photosystem II antenna to photosystem I may stimulate electron flow to NADP only if Q is less than 60-70% oxidized (this condition exists with our thylakoids, even at extremely low absorption fluxes, when the illumination is not specifically enriched in photosystem I absorbed wavelengths); in phosphorylated thylakoids the steady-state redox level Q is substantially shifted to a more oxidized one (measurements of this parameter using light of different wavelengths quantitatively support the idea that thylakoid phosphorylation leads to increased photosystem I and decreased photosystem II cross sections); thylakoid phosphorylation leads to stimulated noncyclic electron flow to NADP only when the increased photosystem I antenna is able to bring about large increases in the steady-state level of oxidized Q.

摘要

通过在电子流向烟酰胺腺嘌呤二核苷酸磷酸(NADP)的过程中测量NADP的还原以及光系统II(Q)的初级电子受体醌的稳态氧化还原水平,研究了类囊体磷酸化对菠菜叶绿体中循环电子传递的影响。将这些数据与电子传递模型的理论预测进行比较,该模型将Q的氧化还原水平和光系统II的光学截面与循环电子流的整体速度联系起来。结果表明,只有当Q的氧化程度低于60%-70%时(即使在极低的吸收通量下,当光照未特别富集光系统I吸收的波长时,我们的类囊体也存在这种情况),将15%-20%的光系统II天线转移到光系统I才可能刺激电子流向NADP;在磷酸化的类囊体中,稳态氧化还原水平Q显著向更氧化的状态转变(使用不同波长的光对该参数进行测量,从定量上支持了类囊体磷酸化导致光系统I增加而光系统II截面减小的观点);只有当增加的光系统I天线能够使氧化态Q的稳态水平大幅增加时,类囊体磷酸化才会导致刺激电子流向NADP。

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