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Thioredoxin-1 Negatively Modulates ADAM17 Activity Through Direct Binding and Indirect Reductive Activity.
Granato, Daniela C; E Costa, Rute A P; Kawahara, Rebeca; Yokoo, Sami; Aragão, Annelize Z; Domingues, Romênia R; Pauletti, Bianca A; Honorato, Rodrigo V; Fattori, Juliana; Figueira, Ana Carolina M; Oliveira, Paulo S L; Consonni, Silvio R; Fernandes, Denise; Laurindo, Francisco; Hansen, Hinrich P; Paes Leme, Adriana F.
Affiliation
  • Granato DC; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
  • E Costa RAP; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
  • Kawahara R; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
  • Yokoo S; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
  • Aragão AZ; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
  • Domingues RR; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
  • Pauletti BA; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
  • Honorato RV; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
  • Fattori J; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
  • Figueira ACM; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
  • Oliveira PSL; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
  • Consonni SR; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
  • Fernandes D; 2 Instituto do Coração , Faculdade de Medicina, Universidade de São Paulo, São Paulo, Brazil .
  • Laurindo F; 2 Instituto do Coração , Faculdade de Medicina, Universidade de São Paulo, São Paulo, Brazil .
  • Hansen HP; 3 Department of Internal Medicine I, University Hospital Cologne , Cologne, Germany .
  • Paes Leme AF; 1 Laboratório Nacional de Biociências , LNBio, CNPEM, Campinas, Brazil .
Antioxid Redox Signal ; 29(8): 717-734, 2018 09 10.
Article in En | MEDLINE | ID: mdl-29334756
ABSTRACT

AIMS:

A disintegrin and metalloprotease 17 (ADAM17) modulates signaling events by releasing surface protein ectodomains such as TNFa and the EGFR-ligands. We have previously characterized cytoplasmic thioredoxin-1 (Trx-1) as a partner of ADAM17 cytoplasmic domain. Still, the mechanism of ADAM17 regulation by Trx-1 is unknown, and it has become of paramount importance to assess the degree of influence that Trx-1 has on metalloproteinase ADAM17.

RESULTS:

Combining discovery and targeted proteomic approaches, we uncovered that Trx-1 negatively regulates ADAM17 by direct and indirect effect. We performed cell-based assays with synthetic peptides and site-directed mutagenesis, and we demonstrated that the interaction interface of Trx-1 and ADAM17 is important for the negative regulation of ADAM17 activity. However, both Trx-1K72A and catalytic site mutant Trx-1C32/35S rescued ADAM17 activity, although the interaction with Trx-1C32/35S was unaffected, suggesting an indirect effect of Trx-1. We confirmed that the Trx-1C32/35S mutant showed diminished reductive capacity, explaining this indirect effect on increasing ADAM17 activity through oxidant levels. Interestingly, Trx-1K72A mutant showed similar oxidant levels to Trx-1C32/35S, even though its catalytic site was preserved. We further demonstrated that the general reactive oxygen species inhibitor, Nacetylcysteine (NAC), maintained the regulation of ADAM17 dependent of Trx-1 reductase activity levels; whereas the electron transport chain modulator, rotenone, abolished Trx-1 effect on ADAM17 activity. INNOVATION We show for the first time that the mechanism of ADAM17 regulation, Trx-1 dependent, can be by direct interaction and indirect effect, bringing new insights into the cross-talk between isomerases and mammalian metalloproteinases.

CONCLUSION:

This unexpected Trx-1K72A behavior was due to more dimer formation and, consequently, the reduction of its Trx-1 reductase activity, evaluated through dimer verification, by gel filtration and mass spectrometry analysis. Antioxid. Redox Signal. 29, 717-734.
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Full text: 1 Database: MEDLINE Main subject: Thioredoxins / ADAM17 Protein Type of study: Prognostic_studies Limits: Humans Language: En Journal: Antioxid Redox Signal Journal subject: METABOLISMO Year: 2018 Type: Article Affiliation country: Brazil

Full text: 1 Database: MEDLINE Main subject: Thioredoxins / ADAM17 Protein Type of study: Prognostic_studies Limits: Humans Language: En Journal: Antioxid Redox Signal Journal subject: METABOLISMO Year: 2018 Type: Article Affiliation country: Brazil