Title
Interferon-gamma activity is potentiated by an intracellular peptide derived from the human 19S ATPase regulatory subunit 4 of the proteasome
Date Issued
16 January 2017
Access level
metadata only access
Resource Type
journal article
Author(s)
Monte E.R.C.
Rossato C.
Russo L.C.
de Castro L.M.
Gozzo F.C.
de Araujo C.B.
Peron J.P.S.
Sant'Anna O.A.
Ferro E.S.
Rioli V.
University of São Paulo
Publisher(s)
Elsevier B.V.
Abstract
Hundreds of intracellular peptides that are neither antigens nor neuropeptides are present in mammalian cells and tissues. These peptides correspond to fragments of cytosolic, nuclear or mitochondrial proteins. Proteasome inhibition affects the levels of the intracellular peptides in human cell lines. Here, the effect of immuneproteasome expression on the intracellular peptide profile was evaluated, and its functional significance was investigated. The expression of the immuneproteasome in HeLa cells was induced by interferon gamma treatment, and the relative concentrations of the intracellular peptides were compared to those of the control cells using isotope labeling and electron spray mass spectrometry. One of the peptides identified, VGSELIQKY (EL28), corresponds to amino acids 251–259 of the human 19S ATPase regulatory subunit 4. This peptide was increased in the extracts of HeLa cells that had been treated with interferon gamma compared to those of control cells. In vitro, EL28 increased the chymotrypsin, trypsin and caspase-like proteasome activities. In vivo, when covalently linked to a cell-penetrating peptide, EL28 potentiated the ability of interferon gamma to stimulate the expression of the immuneproteasome β5i subunit and to increase the proliferation of CD8 + T-cells. The EL28/cell-penetrating peptide construct also improved and positively modulated the secondary IgG anti-bovine serum albumin immune responsiveness elicited in high antibody-responder mice. Together, these results suggest that EL28 is a functional intracellular peptide that can potentiate interferon gamma activity. Biological significance The functional identification of EL28 advances our understanding regarding the bioactive peptides generated by limited proteolysis within cells.
Start page
74
End page
82
Volume
151
Language
English
OCDE Knowledge area
Inmunología Bioquímica, Biología molecular
Scopus EID
2-s2.0-84996536678
PubMed ID
Source
Journal of Proteomics
ISSN of the container
18743919
Sponsor(s)
This work was supported by Brazilian National Research Council (CNPq) grants 400944/2014-6 and 445363/2014-2 , Pro-Reitoria de Pesquisa, University of São Paulo through the Support Center for Research in Proteolysis and Cell Signaling (NAPPS; grant 2012.1.17607.1.2 ), and FAPESP (CeTICS; 2013/07467-1 . ESF and OAS are CNPq fellowship recipients. RPL was a post-doctoral fellowship recipient from CNPq (2015) and is currently a FAPESP fellowship recipient. ERCM was a Master student from the Cell Biology Program, Biomedical Science Institute, University of São Paulo and received a fellowship from CAPES (Coordenação de Aperfeiçoamento de Pessoal de Nível Superior).
Sources of information: Directorio de Producción Científica Scopus