Electron Transfer of Site-Specifically Cross-Linked Complexes between Ferredoxin and Ferredoxin-NADP+ Reductase

被引:7
|
作者
Kimata-Ariga, Yoko [1 ]
Sakakibara, Yukiko [1 ]
Ikegami, Takahisa [2 ]
Hase, Toshiharu [1 ]
机构
[1] Osaka Univ, Lab Regulat Biol React, Suita, Osaka 5650871, Japan
[2] Osaka Univ, Lab Struct Proteom, Inst Prot Res, Suita, Osaka 5650871, Japan
关键词
PHTHALATE DIOXYGENASE REDUCTASE; CYTOCHROME-C; CRYSTAL-STRUCTURE; PHOTOSYSTEM-I; NADP; NITRITE; FUSION; SYSTEM; FORM;
D O I
10.1021/bi100855a
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Ferredoxin (Fd) and Fd-NADP(+) reductase (FNR) are redox partners responsible for the conversion between NADP(+) and NADPH in the plastids of photosynthetic organisms. Introduction of specific disulfide bonds between Fd and FNR by engineering cysteines into the two proteins resulted in 13 different Fd-FNR cross-linked complexes displaying a broad range of activity to catalyze the NADPH-dependent cytochrome c reduction. This variability in activity was thought to be mainly due to different levels of intramolecular electron transfer activity between the FNR and Fd domains. Stopped-flow analysis revealed such differences in the rate of electron transfer from the FNR to Fd domains in some of the cross-linked complexes. A group of the cross-linked complexes with high cytochrome c reduction activity comparable to dissociable wild-type Fd/FNR was shown to assume a similar Fd-FNR interaction mode as in the native Fd: FNR complex by analyses of NMR chemical shift perturbation and absorption spectroscopy. However, the intermolecular electron transfer of these cross-linked complexes with two Fd-binding proteins, nitrite reductasc and photosystem I, was largely inhibited, most probably due to steric hindrance by the FNR moiety linked near the redox center of the Fd domain. In contrast, another group of the cross-linked complexes with low cytochrome c reduction activity tends to mediate higher intermolecular electron transfer activity. Therefore, reciprocal relationship of intramolecular and intermolecular electron transfer abilities was conferred by the linkage of Fd and FNR, which may explain the physiological significance of the separate forms of Fd and FNR in chloroplasts.
引用
收藏
页码:10013 / 10023
页数:11
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