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MOA-二苯乙烯:一种用于研究叶绿体细胞色素 bf 复合物反应的新工具。

MOA-stilbene: A new tool for investigation of the reactions of the chloroplast cytochrome bf complex.

机构信息

Glynn Research Institute, PL30 4AU, Bodmin, Cornwall, United Kingdom.

出版信息

Photosynth Res. 1992 Dec;34(3):465-77. doi: 10.1007/BF00029819.

Abstract

MOA-stilbene is known to be a specific inhibitor of the Qo site of mammalian cytochrome bc 1 complex. We show that it also binds to the chloroplast cytochrome bf complex. Binding to the reduced enzyme induces a red-shift of the Soret and visible absorption bands of the haems b. Steady state and single turnover experiments with thylakoid membranes show that MOA-stilbene promotes additional 'oxidant-induced reduction' of the b haems and slows their subsequent dark reoxidation. In single turnover experiments, the associated slow phase of the carotenoid bandshift at 518 nm is only partially decreased in apparent extent and rate. These and other effects are similar to those produced by NQNO, a Qi site effector, and by analogy indicate that MOA-stilbene should also be primarily a Qi-site effector of the cytochrome bf complex. MOA-stilbene has less effect on other parts of the photosynthetic chain. This confers an important advantage on MOA-stilbene in that its effects on the cytochrome bf complex can be studied by using Photosystem II to activate turnover. Myxothiazol displays effects on the cytochrome bf complex which are similar to, but much weaker than, those of MOA-stilbene.A Q cycle-based model of turnover of the cytochrome bf complex is presented, which can account for several unusual features of kinetic behaviour.

摘要

MOA-二苯乙烯是一种已知的哺乳动物细胞色素 bc1 复合体 Qo 部位的特异性抑制剂。我们发现它也与叶绿体细胞色素 bf 复合体结合。与还原酶结合诱导血红素 b 的 Soret 和可见吸收带的红移。用类囊体膜进行稳态和单次翻转实验表明,MOA-二苯乙烯促进 b 血红素的额外“氧化剂诱导还原”,并减缓其随后的暗再氧化。在单次翻转实验中,与类胡萝卜素带位移相关的慢相在 518nm 处的表观幅度和速率仅部分降低。这些和其他效应与 NQNO(Qi 位效应物)产生的效应相似,并且类似地表明 MOA-二苯乙烯也应主要是细胞色素 bf 复合体的 Qi 位效应物。MOA-二苯乙烯对光合作用链的其他部分的影响较小。这使 MOA-二苯乙烯具有重要优势,因为可以使用光系统 II 激活翻转来研究其对细胞色素 bf 复合体的影响。粘噻唑对细胞色素 bf 复合体的作用与 MOA-二苯乙烯的作用相似,但强度要弱得多。提出了一种基于 Q 循环的细胞色素 bf 复合体周转模型,可以解释几种不寻常的动力学行为特征。

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