Ferredoxin-linked flavoenzyme defines a family of pyridine nucleotide-independent thioredoxin reductases

被引:13
|
作者
Buey, Ruben M. [1 ]
Fernandez-Justel, David [1 ]
de Pereda, Jose M. [2 ,3 ]
Revuelta, Jose L. [1 ]
Schurmann, Peter [4 ]
Buchanan, Bob B. [5 ]
Balsera, Monica [6 ]
机构
[1] Univ Salamanca, Metab Engn Grp, Dept Microbiol & Genet, Salamanca 37007, Spain
[2] CSIC, Inst Biol Mol & Celular Canc, Salamanca 37007, Spain
[3] Univ Salamanca, Salamanca 37007, Spain
[4] Univ Neuchatel, Lab Biol Mol & Cellulaire, CH-2000 Neuchatel, Switzerland
[5] Univ Calif Berkeley, Dept Plant & Microbial Biol, Berkeley, CA 94720 USA
[6] CSIC, Inst Recursos Nat & Agrobiol Salamanca, Salamanca 37008, Spain
关键词
flavoprotein; ferredoxin; protein conformational dynamics; redox-active disulfide; thioredoxin reductase; ESCHERICHIA-COLI; OXYGENIC PHOTOSYNTHESIS; REDOX REGULATION; PROTEIN; SYSTEM; PURIFICATION; DISULFIDE; SUBSTRATE; ENZYME; LIGHT;
D O I
10.1073/pnas.1812781115
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Ferredoxin-dependent thioredoxin reductase was identified 35 y ago in the fermentative bacterium Clostridium pasteurianum [Hammel KE, Cornwell KL, Buchanan BB (1983) Proc Natl Acad Sci USA 80: 3681-3685]. The enzyme, a flavoprotein, was strictly dependent on ferredoxin as reductant and was inactive with either NADPH or NADH. This early work has not been further pursued. We have recently reinvestigated the problem and confirmed that the enzyme, here designated ferredoxin-dependent flavin thioredoxin reductase (FFTR), is a flavoprotein. The enzyme differs from ferredoxin-thioredoxin reductase (FTR), which has a signature [4Fe-4S] cluster, but shows structural similarities to NADP-dependent thioredoxin reductase (NTR). Comparative amino acid sequence analysis showed that FFTR is present in a number of clostridial species, some of which lack both FTR and an archetypal NTR. We have isolated, crystallized, and determined the structural properties of FFTR from a member of this group, Clostridium acetobutylicum, both alone and in complex with Trx. The structures showed an elongated FFTR homodimer, each monomer comprising two Rossmann domains and a non-covalently bound FAD cofactor that exposes the isoalloxazine ring to the solvent. The FFTR structures revealed an alternative domain organization compared with NTR that enables the enzyme to accommodate Fdx rather than NADPH. The results suggest that FFTR exists in a range of conformations with varying degrees of domain separation in solution and that the stacking between the two redox-active groups for the transfer of reducing equivalents results in a profound structural reorganization. A mechanism in accord with the findings is proposed.
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页码:12967 / 12972
页数:6
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