首页> 外文期刊>Journal of bacteriology >Distinct Roles of Multiple NDH-1 Complexes in the Cyanobacterial Electron Transport Network as Revealed by Kinetic Analysis of P700+ Reduction in Various ndh-Deficient Mutants of Synechocystis sp. Strain PCC6803
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Distinct Roles of Multiple NDH-1 Complexes in the Cyanobacterial Electron Transport Network as Revealed by Kinetic Analysis of P700+ Reduction in Various ndh-Deficient Mutants of Synechocystis sp. Strain PCC6803

机译:动力学的分析表明,Ndh-1缺陷的多个集胞藻属突变体中的P700 +还原揭示了多个NDH-1复合物在蓝细菌电子转运网络中的不同作用。株PCC6803

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While methyl viologen had only a small effect on P700+ rereduction kinetics after far-red pulses in KCN-treated wild-type Synechocystis sp. strain PCC6803 and an NdhF3/NdhF4 (NdhF3/F4)-defective mutant, it involved a rather slow P700+ rereduction in an NdhF1-defective mutant. This strongly indicates that (i) active electron flow from metabolites to plastoquinone is suppressed upon deletion of ndhF1 and (ii) photosystem 1-mediated cyclic electron transport is dependent on NdhF3/F4-type NDH-1 complexes.
机译:甲基紫精对KCN处理的野生型 Snechocystis 菌中远红脉冲后P700 + 还原动力学的影响很小。 PCC6803菌株和一个NdhF3 / NdhF4(NdhF3 / F4)缺陷型突变体,在NdhF1缺陷型突变体中P700 + 的还原过程相当缓慢。这强烈表明(i)从代谢物到质体醌的活性电子流在 ndhF1 缺失时被抑制,并且(ii)光系统1介导的循环电子传递依赖于NdhF3 / F4型NDH-1复合物。

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