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光对呼吸作用的抑制是由于隐球藻中细胞色素b6-f复合体以及质体蓝素/细胞色素c-553库的双重功能所致。

Light inhibition of respiration is due to a dual function of the cytochrome b6-f complex and the plastocyanin/cytochrome c-553 pool in Aphanocapsa.

作者信息

Sandmann G, Malkin R

出版信息

Arch Biochem Biophys. 1984 Oct;234(1):105-11. doi: 10.1016/0003-9861(84)90329-1.

Abstract

Studies of the respiratory electron transport pathway in the blue-green alga, Aphanocapsa, demonstrated the presence of cytochrome oxidase and a cytochrome complex. The use of antimycin A showed only the occurrence of a plastidal type of cytochrome complex (the cytochrome b6-f complex), which is insensitive to this inhibitor. Determination of the extent of photooxidation of cytochromes c-553 and f-556 under conditions of high and low cytochrome oxidase activities indicated an electron flow through both cytochromes to cytochrome oxidase. Direct evidence for a common segment of photosynthetic and respiratory electron transport from plastoquinone via the cytochrome b6-f complex to the soluble plastocyanin/cytochrome c-553 pool, as well as a competition between cytochrome oxidase and Photosystem I for reductants in this pool in the light, was obtained by measurements of electron transport with suitable electron donors in this alga.

摘要

对蓝绿藻隐球藻呼吸电子传递途径的研究表明存在细胞色素氧化酶和一种细胞色素复合体。抗霉素A的使用仅显示出一种质体类型的细胞色素复合体(细胞色素b6-f复合体)的存在,该复合体对这种抑制剂不敏感。在细胞色素氧化酶活性高和低的条件下测定细胞色素c-553和f-556的光氧化程度,表明电子通过这两种细胞色素流向细胞色素氧化酶。通过用合适的电子供体测量该藻类中的电子传递,获得了从质体醌经细胞色素b6-f复合体到可溶性质体蓝素/细胞色素c-553库的光合和呼吸电子传递共同部分的直接证据,以及在光照下细胞色素氧化酶和光系统I对该库中还原剂的竞争。

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