Thioredoxins and Glutaredoxins: Unifying Elements in Redox Biology

Тиоредоксины и глутаредоксины: объединяющие элементы редокс-биологии
Yves Meyer, Bob B. Buchanan, Florence Vignols, Jean‐Philippe Reichheld
2009-08-19

evolutionary history of redox regulationglutaredoxinredox regulationribonucleotide reductasethioredoxin
Since their discovery as a substrate for ribonucleotide reductase (RNR), the role of thioredoxin (Trx) and glutaredoxin (Grx) has been largely extended through their regulatory function. Both proteins act by changing the structure and activity of a broad spectrum of target proteins, typically by modifying redox status. Trx and Grx are members of families with multiple and partially redundant genes. The number of genes clearly increased with the appearance of multicellular organisms, in part because of new types of Trx and Grx with orthologs throughout the animal and plant kingdoms. The function of Trx and Grx also broadened as cells achieved increased complexity, especially in the regulation arena. In view of these progressive changes, the ubiquitous distribution of Trx and the wide occurrence of Grx enable these proteins to serve as indicators of the evolutionary history of redox regulation. In so doing, they add a unifying element that links the diverse forms of life to one another in an uninterrupted continuum. It is anticipated that future research will embellish this continuum and further elucidate the properties of these proteins and their impact on biology. The new information will be important not only to our understanding of the role of Trx and Grx in fundamental cell processes but also to future societal benefits as the proteins find new applications in a range of fields.
1
As cellular complexity increased, thioredoxin and glutaredoxin functions broadened, particularly in the regulation of cellular processes.
2
Both protein families contain multiple partially redundant genes, with gene numbers increasing markedly alongside the emergence of multicellular organisms.
3
The evolution of multicellularity introduced new thioredoxin and glutaredoxin types conserved across animal and plant kingdoms.
4
Their ubiquitous distribution makes thioredoxins and glutaredoxins indicators of redox-regulation evolution and unifying links across diverse forms of life.
5
Thioredoxins and glutaredoxins regulate diverse target proteins by altering their redox state, extending well beyond their original role as ribonucleotide reductase substrates.

thioredoxins (Trx) and glutaredoxins (Grx) across diverse forms of life

the evolutionary diversification and regulatory roles of Trx and Grx in redox biology

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2009-08-19
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Yves Meyer
Bob B. Buchanan
Florence Vignols
Jean‐Philippe Reichheld
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