Two isoforms of ferredoxin:NADP+ oxidoreductase from wheat leaves: purification and initial biochemical characterization

被引:0
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作者
Joanna Grzyb
Przemysław Malec
Izabela Rumak
Maciej Garstka
Kazimierz Strzałka
机构
[1] Jagiellonian University,Department of Plant Physiology and Biochemistry, Faculty of Biochemistry, Biophysics and Biotechnology
[2] Weizmann Institute of Science,Department of Metabolic Regulation, Institute of Biochemistry, Faculty of Biology
[3] University of Warsaw,Department of Plant Anatomy and Cytology, Institute of Plant Experimental Biology, Faculty of Biology
[4] University of Warsaw,undefined
来源
Photosynthesis Research | 2008年 / 96卷
关键词
Diaphorase; Ferredoxin:NADP; oxidoreductase; Isoforms; Oligomerization; Photosynthesis; Wheat;
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学科分类号
摘要
Ferredoxin:NADP+ oxidoreductase is an enzyme associated with the stromal side of the thylakoid membrane in the chloroplast. It is involved in photosynthetic linear electron transport to produce NADPH and is supposed to play a role in cyclic electron transfer, generating a transmembrane pH gradient allowing ATP production, if photosystem II is non-functional or no NADP+ is available for reduction. Different FNR isoforms have been described in non-photosynthetic tissues, where the enzyme catalyses the NADPH-dependent reduction of ferredoxin (Fd), necessary for some biosynthetic pathways. Here, we report the isolation and purification of two FNR isoproteins from wheat leaves, called FNR-A and FNR-B. These forms of the enzyme were identified as products of two different genes, as confirmed by mass spectrometry. The molecular masses of FNR-A and FNR-B were 34.3 kDa and 35.5 kDa, respectively. The isoelectric point of both FNR-A and FNR-B was about 5, but FNR-B appeared more acidic (of about 0.2 pH unit) than FNR-A. Both isoenzymes were able to catalyse a NADPH-dependent reduction of dibromothymoquinone and the mixture of isoforms catalysed reduction of cytochrome c in the presence of Fd. For the first time, the pH- and ionic strength dependent oligomerization of FNRs is observed. No other protein was necessary for complex formation. The putative role of the two FNR isoforms in photosynthesis is discussed based on current knowledge of electron transport in chloroplasts.
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页码:99 / 112
页数:13
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