| Literature DB >> 20723761 |
Ulrike Seifert1, Lukasz P Bialy, Frédéric Ebstein, Dawadschargal Bech-Otschir, Antje Voigt, Friederike Schröter, Timour Prozorovski, Nicole Lange, Janos Steffen, Melanie Rieger, Ulrike Kuckelkorn, Orhan Aktas, Peter-M Kloetzel, Elke Krüger.
Abstract
Interferon (IFN)-induced immunoproteasomes (i-proteasomes) have been associated with improved processing of major histocompatibility complex (MHC) class I antigens. Here, we show that i-proteasomes function to protect cell viability under conditions of IFN-induced oxidative stress. IFNs trigger the production of reactive oxygen species, which induce protein oxidation and the formation of nascent, oxidant-damaged proteins. We find that the ubiquitylation machinery is concomitantly upregulated in response to IFNs, functioning to target defective ribosomal products (DRiPs) for degradation by i-proteasomes. i-proteasome-deficiency in cells and in murine inflammation models results in the formation of aggresome-like induced structures and increased sensitivity to apoptosis. Efficient clearance of these aggregates by the enhanced proteolytic activity of the i-proteasome is important for the preservation of cell viability upon IFN-induced oxidative stress. Our findings suggest that rather than having a specific role in the production of class I antigens, i-proteasomes increase the peptide supply for antigen presentation as part of a more general role in the maintenance of protein homeostasis. Copyright 2010 Elsevier Inc. All rights reserved.Entities:
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Year: 2010 PMID: 20723761 DOI: 10.1016/j.cell.2010.07.036
Source DB: PubMed Journal: Cell ISSN: 0092-8674 Impact factor: 41.582