Thioredoxin: Difference between revisions

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== Structural highlights ==
== Structural highlights ==
<StructureSection load="1ert" size="400" side="right" caption="Human thioredoxin (PDB entry 1ERT)">
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<p>
All thioredoxin proteins share a common structure, consisting of <b>four α-helices</b> (highlighted in red) and <b>five β-sheets</b> (highlighted in blue). This conserved fold is crucial for the redox activity of thioredoxins.
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The <scene name='43/430885/Cv/4'>active site motif Cys-Gly-Pro-Cys</scene> is involved in the reduction of disulfide bonds in proteins<ref>Åslund F et al. (1997). J Biol Chem. 272(48):30780–30786.</ref>.
The <scene name='43/430885/Cv/4'>active site motif Cys-Gly-Pro-Cys</scene> is involved in the reduction of disulfide bonds in proteins<ref>Åslund F et al. (1997). J Biol Chem. 272(48):30780–30786.</ref>.
Unlike many other thioredoxins, the human cytoplasmic thioredoxin has three cysteine residues (Cys 62, Cys 69, Cys 73) additional to the active site <scene name='43/430885/Cv/2'>Cys 32 and Cys 35</scene>.  
Unlike many other thioredoxins, the human cytoplasmic thioredoxin has three cysteine residues (Cys 62, Cys 69, Cys 73) additional to the active site <scene name='43/430885/Cv/2'>Cys 32 and Cys 35</scene>.  

Revision as of 19:41, 30 June 2025

Human thioredoxin (PDB entry 1ert)

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All thioredoxin proteins share a common structure, consisting of four α-helices (highlighted in red) and five β-sheets (highlighted in blue). This conserved fold is crucial for the redox activity of thioredoxins.

The active site motif Cys-Gly-Pro-Cys is involved in the reduction of disulfide bonds in proteins[1]. Unlike many other thioredoxins, the human cytoplasmic thioredoxin has three cysteine residues (Cys 62, Cys 69, Cys 73) additional to the active site Cys 32 and Cys 35. The human cytoplasmic thioredoxin crystal structure reveals a homodimer with Cys 73 forming an intermolecular disulfide bridge.


3D Structures of Thioredoxin

Thioredoxin 3D structures

</StructureSection>

References

  1. ↑ Åslund F et al. (1997). J Biol Chem. 272(48):30780–30786.