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EC 1.11.1.15 Details
EC number
1.11.1.15
Accepted name
peroxiredoxin
Reaction
2 R′-SH + ROOH = R′-S-S-R′ + H2O + ROH
Other name(s)
thioredoxin peroxidase, tryparedoxin peroxidase, alkyl hydroperoxide reductase C22, AhpC, TrxPx, TXNPx, Prx, PRDX
Systematic name
thiol-containing-reductant:hydroperoxide oxidoreductase
CAS registry number
207137-51-7
Comment
Peroxiredoxins (Prxs) are a ubiquitous family of antioxidant proteins. They can be divided into three classes: typical 2-Cys, atypical 2-Cys and 1-Cys peroxiredoxins [1]. The peroxidase reaction comprises two steps centred around a redox-active cysteine called the peroxidatic cysteine. All three peroxiredoxin classes have the first step in common, in which the peroxidatic cysteine attacks the peroxide substrate and is oxidized to S-hydroxycysteine (a sulfenic acid) (see mechanism). The second step of the peroxidase reaction, the regeneration of cysteine from S-hydroxycysteine, distinguishes the three peroxiredoxin classes. For typical 2-Cys Prxs, in the second step, the peroxidatic S-hydroxycysteine from one subunit is attacked by the ‘resolving’ cysteine located in the C-terminus of the second subunit, to form an intersubunit disulfide bond, which is then reduced by one of several cell-specific thiol-containing reductants (R′-SH) (e.g. thioredoxin, AhpF, tryparedoxin or AhpD), completing the catalytic cycle. In the atypical 2-Cys Prxs, both the peroxidatic cysteine and its resolving cysteine are in the same polypeptide, so their reaction forms an intrachain disulfide bond [1]. To recycle the disulfide, known atypical 2-Cys Prxs appear to use thioredoxin as an electron donor [3]. The 1-Cys Prxs conserve only the peroxidatic cysteine, so that its oxidized form is directly reduced to cysteine by the reductant molecule [4].
History
created 2004, deleted 2020
EC Tree
1.13.11.7 created 1965 as EC 1.13.1.7, transferred 1972 to EC 1.13.11.7, deleted 1980
1.13.11.21 created 1972, deleted 2001
1.13.12.10 created 1989, modified 1999, deleted 2001