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Reference - PMID:17409354 - The peroxiredoxin Tpx1 is essential as a H2O2 scavenger during aerobic growth in fission yeast.

Reference summary

PubMed ID
PMID:17409354
Title
The peroxiredoxin Tpx1 is essential as a H2O2 scavenger during aerobic growth in fission yeast.
Authors
Jara M, Vivancos AP, Calvo IA, Moldón A, Sansó M, Hidalgo E
Citation
Mol Biol Cell 2007 Jun;18(6):2288-95
Publication year
2007
Abstract
Peroxiredoxins are known to interact with hydrogen peroxide (H(2)O(2)) and to participate in oxidant scavenging, redox signal transduction, and heat-shock responses. The two-cysteine peroxiredoxin Tpx1 of Schizosaccharomyces pombe has been characterized as the H(2)O(2) sensor that transduces the redox signal to the transcription factor Pap1. Here, we show that Tpx1 is essential for aerobic, but not anaerobic, growth. We demonstrate that Tpx1 has an exquisite sensitivity for its substrate, which explains its participation in maintaining low steady-state levels of H(2)O(2). We also show in vitro and in vivo that inactivation of Tpx1 by oxidation of its catalytic cysteine to a sulfinic acid is always preceded by a sulfinic acid form in a covalently linked dimer, which may be important for understanding the kinetics of Tpx1 inactivation. Furthermore, we provide evidence that a strain expressing Tpx1.C169S, lacking the resolving cysteine, can sustain aerobic growth, and we show that small reductants can modulate the activity of the mutant protein in vitro, probably by supplying a thiol group to substitute for cysteine 169.

Annotation

GO biological process

GO:0045454 - cell redox homeostasis

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GO molecular function

GO:0016209 - antioxidant activity

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GO:0004601 - peroxidase activity

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GO:0051920 - peroxiredoxin activity

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GO:0005515 - protein binding

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GO:0015035 - protein-disulfide reductase activity

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GO:0004784 - superoxide dismutase activity

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GO:0004791 - thioredoxin-disulfide reductase (NADPH) activity

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Modification

MOD:00689 - disulfide crosslinked residues

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MOD:00267 - L-cysteine sulfinic acid

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