Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1911289 | Free Radical Biology and Medicine | 2007 | 13 Pages |
Abstract
Thioredoxin (TRX) is generally a 12-kDa protein-disulfide reductase. Here, we report the discovery of a 16-kDa thioredoxin-related protein designated Cr-TRP16, from a “living fossil,” the horseshoe crab (Carcinoscorpius rotundicauda). Cr-TRP16 contains an atypical WCPPC catalytic motif and possesses the classical thiodisulfide reductase activity, as indicated by the insulin reduction assay. Furthermore, Cr-TRP16 can function as an antioxidant and protect against DNA nicking by reactive oxygen species. Overexpression of Cr-TRP16 regulated the transcription of NF-κB-dependent genes probably by enhancing NF-κB DNA-binding activity, suggesting possible roles for Cr-TRP16 in modulating the NF-κB signaling pathway. In vivo, the antioxidant pyrrolidine dithiocarbamate suppressed the expression of NF-κB-regulated genes such as IκB and inducible nitric oxide synthase. This further supports the notion that oxidative stress is also a regulatory factor of the NF-κB signaling pathway, a phenomenon which has been entrenched for several hundred million years. Furthermore, we demonstrated that the 16-kDa thioredoxins are evolutionarily conserved from Caenorhabditis elegans to human. Interestingly, thioredoxin-like 6, a human homologue of Cr-TRP16, could also enhance NF-κB DNA-binding activity, suggesting that the regulatory role of the 16-kDa thioredoxins on NF-κB is well conserved through evolution.
Keywords
NF-κBGNBMFOPDTCTrxRDTTiNOSTrxAntioxidantInnate immunityGram-negative bacteriathioredoxin reductasethioredoxinHuman thioredoxinpyrrolidine dithiocarbamatedithiothreitolFree radicalsreverse transcriptionConservationinducible nitric oxide synthaseEMSA یا electrophoretic mobility shift assay Evolutionmixed-function oxidaseIAMSignal transductionpolymerase chain reactionPCRiodoacetamide
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Authors
Xiao Wei Wang, Yih-Cherng Liou, Bow Ho, Jeak Ling Ding,