首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >EPR study of electron transport in the cyanobacterium Synechocystis sp PCC 6803: Oxygen-dependent interrelations between photosynthetic and respiratory electron transport chains
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EPR study of electron transport in the cyanobacterium Synechocystis sp PCC 6803: Oxygen-dependent interrelations between photosynthetic and respiratory electron transport chains

机译:EPR研究蓝细菌Synechocystis sp PCC 6803中的电子传输:光合作用和呼吸电子传输链之间的氧依赖性相互关系

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摘要

In this work, we investigated electron transport processes in the cyanobacterium Synechocystis sp. PCC 6803, with a special emphasis focused on oxygen-dependent interrelations between photosynthetic and respiratory electron transport chains. Redox transients of the photosystem I primary donor P700 and oxygen exchange processes were measured by the EPR method under the same experimental conditions. To discriminate between the factors controlling electron flow through photosynthetic and respiratory electron transport chains, we compared the P700 redox transients and oxygen exchange processes in wild type cells and mutants with impaired photosystem II and terminal oxidases (CtaI, CydAB, CtaDEII). It was shown that the rates of electron flow through both photosynthetic and respiratory electron transport chains strongly depended on the transmembrane proton gradient and oxygen concentration in cell suspension. Electron transport through photosystem I was controlled by two main mechanisms: (i) oxygen-dependent acceleration of electron transfer from photosystem I to NADP, and (ii) slowing down of electron flow between photosystem II and photosystern I governed by the intrathylakoid pH. Inhibitor analysis of P700 redox transients led us to the conclusion that electron fluxes from dehydrogenases and from cyclic electron transport pathway comprise 20-30% of the total electron flux from the intersystem electron transport chain to P700(+). (c) 2005 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们调查了蓝藻Synechocystis sp。中的电子传输过程。 PCC 6803特别强调光合作用和呼吸电子传输链之间的氧依赖性相互关系。在相同的实验条件下,通过EPR方法测量了光系统I主要供体P700和氧交换过程的氧化还原瞬态。为了区分控制通过光合作用和呼吸电子传输链流动的电子的因素,我们比较了光系统II和末端氧化酶(CtaI,CydAB,CtaDEII)受损的野生型细胞和突变体中的P700氧化还原瞬态和氧交换过程。结果表明,通过光合作用和呼吸电子传输链的电子流率强烈依赖于跨膜质子梯度和细胞悬浮液中的氧浓度。通过光系统I的电子传输受两个主要机制控制:(i)电子从光系统I到NADP的依赖氧的加速迁移,以及(ii)由类囊体内pH控制的光系统II与光系统I之间的电子流动减慢。对P700氧化还原瞬态的抑制剂分析得出的结论是,脱氢酶和循环电子传输路径的电子通量占系统间电子传输链至P700(+)的总电子通量的20-30%。 (c)2005 Elsevier B.V.保留所有权利。

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