Structural basis of redox signaling in photosynthesis:: structure and function of ferredoxin:thioredoxin reductase and target enzymes

被引:40
作者
Dai, SD
Johansson, K
Miginiac-Maslow, M
Schürmann, P
Eklund, H
机构
[1] SLU, BMC, Dept Mol Biosci, S-75124 Uppsala, Sweden
[2] Natl Jewish Med & Res Ctr, Howard Hughes Med Inst, Integrated Dept Immunol, Denver, CO 80206 USA
[3] Univ Colorado, Hlth Sci Ctr, Denver, CO 80206 USA
[4] ESIL AFMB UMR 6098 CNRS UI UII, F-13009 Marseille, France
[5] Univ Paris 11, Inst Biotechnol Plantes, F-91405 Orsay, France
[6] Univ Neuchatel, Lab Biochim Vegetale, CH-2007 Neuchatel, Switzerland
关键词
chloroplast enzymes; ferredoxin; fructose 1,6-bisphosphatase; glyceraldehyde 3-phosphate dehydrogenase; malate dehydrogenase; redox signalling; thioredoxin;
D O I
10.1023/B:PRES.0000017194.34167.6d
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The role of the ferredoxin: thioredoxin system in the reversible light activation of chloroplast enzymes by thioldisulfide interchange with thioredoxins is now well established. Recent fruitful collaboration between biochemists and structural biologists, reflected by the shared authorship of the paper, allowed to solve the structures of all of the components of the system, including several target enzymes, thus providing a structural basis for the elucidation of the activation mechanism at a molecular level. In the present Review, these structural data are analyzed in conjunction with the information that was obtained previously through biochemical and site-directed mutagenesis approaches. The unique 4Fe-4S cluster enzyme ferredoxin: thioredoxin reductase (FTR) uses photosynthetically reduced ferredoxin as an electron donor to reduce the disulfide bridge of different thioredoxin isoforms. Thioredoxins in turn reduce regulatory disulfides of various target enzymes. This process triggers conformational changes on these enzymes, allowing them to reach optimal activity. No common activation mechanism can be put forward for these enzymes, as every thioredoxin-regulated protein undergoes specific structural modifications. It is thus important to solve the structures of the individual target enzymes in order to fully understand the molecular mechanism of the redox regulation of each of them.
引用
收藏
页码:233 / 248
页数:16
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